Item talk:Q142939
From geokb
{
"OpenAlex": { "id": "https://openalex.org/A5057128395", "orcid": "https://orcid.org/0000-0002-6921-4870", "display_name": "Erin Brooks", "display_name_alternatives": [ "E. S. Brooks", "Erin Brook", "E. Brooks", "Erin S. Brooks", "Erin Brooks" ], "works_count": 191, "cited_by_count": 2612, "summary_stats": { "2yr_mean_citedness": 0.6222222222222222, "h_index": 27, "i10_index": 53 }, "ids": { "openalex": "https://openalex.org/A5057128395", "orcid": "https://orcid.org/0000-0002-6921-4870", "scopus": "http://www.scopus.com/inward/authorDetails.url?authorID=7102304929&partnerID=MN8TOARS" }, "affiliations": [ { "institution": { "id": "https://openalex.org/I155093810", "ror": "https://ror.org/03hbp5t65", "display_name": "University of Idaho", "country_code": "US", "type": "education", "lineage": [ "https://openalex.org/I155093810" ] }, "years": [ 2024, 2023, 2022, 2021, 2020, 2019, 2018, 2017, 2016, 2015 ] }, { "institution": { "id": "https://openalex.org/I72951846", "ror": "https://ror.org/05dk0ce17", "display_name": "Washington State University", "country_code": "US", "type": "education", "lineage": [ "https://openalex.org/I72951846" ] }, "years": [ 2015 ] }, { "institution": { "id": "https://openalex.org/I1284584826", "ror": "https://ror.org/006cvnv84", "display_name": "Social Science Research Council", "country_code": "US", "type": "nonprofit", "lineage": [ "https://openalex.org/I1284584826" ] }, "years": [ 2010 ] }, { "institution": { "id": "https://openalex.org/I114395901", "ror": "https://ror.org/043mer456", "display_name": "University of Nebraska\u2013Lincoln", "country_code": "US", "type": "education", "lineage": [ "https://openalex.org/I114395901" ] }, "years": [ 2010 ] }, { "institution": { "id": "https://openalex.org/I4210140135", "ror": "https://ror.org/04347cr60", "display_name": "Rocky Mountain Research Station", "country_code": "US", "type": "government", "lineage": [ "https://openalex.org/I1313416372", "https://openalex.org/I1336096307", "https://openalex.org/I4210140135" ] }, "years": [ 2006 ] }, { "institution": { "id": "https://openalex.org/I1310519924", "ror": "https://ror.org/01kkg9921", "display_name": "Oregon Department of Environmental Quality", "country_code": "US", "type": "government", "lineage": [ "https://openalex.org/I1310519924" ] }, "years": [ 2006 ] }, { "institution": { "id": "https://openalex.org/I205783295", "ror": "https://ror.org/05bnh6r87", "display_name": "Cornell University", "country_code": "US", "type": "education", "lineage": [ "https://openalex.org/I205783295" ] }, "years": [ 2001, 2000, 1999 ] }, { "institution": { "id": "https://openalex.org/I90464598", "ror": "https://ror.org/02y8nb297", "display_name": "University of Alaska Southeast", "country_code": "US", "type": "education", "lineage": [ "https://openalex.org/I90464598" ] }, "years": [ 2000 ] }, { "institution": { "id": "https://openalex.org/I2799617873", "ror": "https://ror.org/05tmv0d13", "display_name": "American Society of Civil Engineers", "country_code": "US", "type": "nonprofit", "lineage": [ "https://openalex.org/I2799617873" ] }, "years": [ 2000 ] }, { "institution": { "id": "https://openalex.org/I1295703814", "ror": "https://ror.org/01s0tbj55", "display_name": "World Vision", "country_code": "US", "type": "nonprofit", "lineage": [ "https://openalex.org/I1295703814", "https://openalex.org/I4210093867" ] }, "years": [ 2000 ] } ], "last_known_institutions": [ { "id": "https://openalex.org/I155093810", "ror": "https://ror.org/03hbp5t65", "display_name": "University of Idaho", "country_code": "US", "type": "education", "lineage": [ "https://openalex.org/I155093810" ] } ], "topics": [ { "id": "https://openalex.org/T10330", "display_name": "Hydrological Modeling and Water Resource Management", "count": 100, "subfield": { "id": "https://openalex.org/subfields/2312", "display_name": "Water Science and Technology" }, "field": { "id": "https://openalex.org/fields/23", "display_name": "Environmental Science" }, "domain": { "id": "https://openalex.org/domains/3", "display_name": "Physical Sciences" } }, { "id": "https://openalex.org/T10889", "display_name": "Soil Erosion and Agricultural Sustainability", "count": 57, "subfield": { "id": "https://openalex.org/subfields/1111", "display_name": "Soil Science" }, "field": { "id": "https://openalex.org/fields/11", "display_name": "Agricultural and Biological Sciences" }, "domain": { "id": "https://openalex.org/domains/1", "display_name": "Life Sciences" } }, { "id": "https://openalex.org/T11311", "display_name": "Biogeochemical Cycling of Nutrients in Aquatic Ecosystems", "count": 46, "subfield": { "id": "https://openalex.org/subfields/2304", "display_name": "Environmental Chemistry" }, "field": { "id": "https://openalex.org/fields/23", "display_name": "Environmental Science" }, "domain": { "id": "https://openalex.org/domains/3", "display_name": "Physical Sciences" } }, { "id": "https://openalex.org/T10894", "display_name": "Groundwater Flow and Transport Modeling", "count": 32, "subfield": { "id": "https://openalex.org/subfields/2305", "display_name": "Environmental Engineering" }, "field": { "id": "https://openalex.org/fields/23", "display_name": "Environmental Science" }, "domain": { "id": "https://openalex.org/domains/3", "display_name": "Physical Sciences" } }, { "id": "https://openalex.org/T10577", "display_name": "Ecological Dynamics of Riverine Landscapes", "count": 22, "subfield": { "id": "https://openalex.org/subfields/2303", "display_name": "Ecology" }, "field": { "id": "https://openalex.org/fields/23", "display_name": "Environmental Science" }, "domain": { "id": "https://openalex.org/domains/3", "display_name": "Physical Sciences" } }, { "id": "https://openalex.org/T10716", "display_name": "Mechanics and Transport in Unsaturated Soils", "count": 19, "subfield": { "id": "https://openalex.org/subfields/2205", "display_name": "Civil and Structural Engineering" }, "field": { "id": "https://openalex.org/fields/22", "display_name": "Engineering" }, "domain": { "id": "https://openalex.org/domains/3", "display_name": "Physical Sciences" } }, { "id": "https://openalex.org/T11312", "display_name": "Remote Sensing of Soil Moisture", "count": 16, "subfield": { "id": "https://openalex.org/subfields/2305", "display_name": "Environmental Engineering" }, "field": { "id": "https://openalex.org/fields/23", "display_name": "Environmental Science" }, "domain": { "id": "https://openalex.org/domains/3", "display_name": "Physical Sciences" } }, { "id": "https://openalex.org/T10555", "display_name": "Impact of Climate Change on Forest Wildfires", "count": 16, "subfield": { "id": "https://openalex.org/subfields/2306", "display_name": "Global and Planetary Change" }, "field": { "id": "https://openalex.org/fields/23", "display_name": "Environmental Science" }, "domain": { "id": "https://openalex.org/domains/3", "display_name": "Physical Sciences" } }, { "id": "https://openalex.org/T10398", "display_name": "Stable Isotope Analysis of Groundwater and Precipitation", "count": 11, "subfield": { "id": "https://openalex.org/subfields/1906", "display_name": "Geochemistry and Petrology" }, "field": { "id": "https://openalex.org/fields/19", "display_name": "Earth and Planetary Sciences" }, "domain": { "id": "https://openalex.org/domains/3", "display_name": "Physical Sciences" } }, { "id": "https://openalex.org/T10266", "display_name": "Global Forest Drought Response and Climate Change", "count": 11, "subfield": { "id": "https://openalex.org/subfields/2306", "display_name": "Global and Planetary Change" }, "field": { "id": "https://openalex.org/fields/23", "display_name": "Environmental Science" }, "domain": { "id": "https://openalex.org/domains/3", "display_name": "Physical Sciences" } }, { "id": "https://openalex.org/T12091", "display_name": "Carbon Dynamics in Peatland Ecosystems", "count": 9, "subfield": { "id": "https://openalex.org/subfields/2303", "display_name": "Ecology" }, "field": { "id": "https://openalex.org/fields/23", "display_name": "Environmental Science" }, "domain": { "id": "https://openalex.org/domains/3", "display_name": "Physical Sciences" } }, { "id": "https://openalex.org/T10535", "display_name": "Landslide Hazards and Risk Assessment", "count": 9, "subfield": { "id": "https://openalex.org/subfields/2308", "display_name": "Management, Monitoring, Policy and Law" }, "field": { "id": "https://openalex.org/fields/23", "display_name": "Environmental Science" }, "domain": { "id": "https://openalex.org/domains/3", "display_name": "Physical Sciences" } }, { "id": "https://openalex.org/T10004", "display_name": "Soil Carbon Dynamics and Nutrient Cycling in Ecosystems", "count": 7, "subfield": { "id": "https://openalex.org/subfields/1111", "display_name": "Soil Science" }, "field": { "id": "https://openalex.org/fields/11", "display_name": "Agricultural and Biological Sciences" }, "domain": { "id": "https://openalex.org/domains/1", "display_name": "Life Sciences" } }, { "id": "https://openalex.org/T10770", "display_name": "Digital Soil Mapping Techniques", "count": 6, "subfield": { "id": "https://openalex.org/subfields/2305", "display_name": "Environmental Engineering" }, "field": { "id": "https://openalex.org/fields/23", "display_name": "Environmental Science" }, "domain": { "id": "https://openalex.org/domains/3", "display_name": "Physical Sciences" } }, { "id": "https://openalex.org/T12383", "display_name": "Aeolian Geomorphology and Wind Erosion Dynamics", "count": 6, "subfield": { "id": "https://openalex.org/subfields/1904", "display_name": "Earth-Surface Processes" }, "field": { "id": "https://openalex.org/fields/19", "display_name": "Earth and Planetary Sciences" }, "domain": { "id": "https://openalex.org/domains/3", "display_name": "Physical Sciences" } }, { "id": "https://openalex.org/T10644", "display_name": "Impacts of Climate Change on Glaciers and Water Availability", "count": 6, "subfield": { "id": "https://openalex.org/subfields/1902", "display_name": "Atmospheric Science" }, "field": { "id": "https://openalex.org/fields/19", "display_name": "Earth and Planetary Sciences" }, "domain": { "id": "https://openalex.org/domains/3", "display_name": "Physical Sciences" } }, { "id": "https://openalex.org/T10029", "display_name": "Climate Change and Variability Research", "count": 6, "subfield": { "id": "https://openalex.org/subfields/2306", "display_name": "Global and Planetary Change" }, "field": { "id": "https://openalex.org/fields/23", "display_name": "Environmental Science" }, "domain": { "id": "https://openalex.org/domains/3", "display_name": "Physical Sciences" } }, { "id": "https://openalex.org/T10439", "display_name": "Adaptation to Climate Change in Agriculture", "count": 5, "subfield": { "id": "https://openalex.org/subfields/1105", "display_name": "Ecology, Evolution, Behavior and Systematics" }, "field": { "id": "https://openalex.org/fields/11", "display_name": "Agricultural and Biological Sciences" }, "domain": { "id": "https://openalex.org/domains/1", "display_name": "Life Sciences" } }, { "id": "https://openalex.org/T12310", "display_name": "Factors Affecting Maize Yield and Lodging Resistance", "count": 5, "subfield": { "id": "https://openalex.org/subfields/1102", "display_name": "Agronomy and Crop Science" }, "field": { "id": "https://openalex.org/fields/11", "display_name": "Agricultural and Biological Sciences" }, "domain": { "id": "https://openalex.org/domains/1", "display_name": "Life Sciences" } }, { "id": "https://openalex.org/T11404", "display_name": "Deficit Irrigation for Agricultural Water Management", "count": 4, "subfield": { "id": "https://openalex.org/subfields/1111", "display_name": "Soil Science" }, "field": { "id": "https://openalex.org/fields/11", "display_name": "Agricultural and Biological Sciences" }, "domain": { "id": "https://openalex.org/domains/1", "display_name": "Life Sciences" } }, { "id": "https://openalex.org/T10564", "display_name": "Microbial Nitrogen Cycling in Wastewater Treatment Systems", "count": 4, "subfield": { "id": "https://openalex.org/subfields/2310", "display_name": "Pollution" }, "field": { "id": "https://openalex.org/fields/23", "display_name": "Environmental Science" }, "domain": { "id": "https://openalex.org/domains/3", "display_name": "Physical Sciences" } }, { "id": "https://openalex.org/T11333", "display_name": "Arctic Permafrost Dynamics and Climate Change", "count": 4, "subfield": { "id": "https://openalex.org/subfields/1902", "display_name": "Atmospheric Science" }, "field": { "id": "https://openalex.org/fields/19", "display_name": "Earth and Planetary Sciences" }, "domain": { "id": "https://openalex.org/domains/3", "display_name": "Physical Sciences" } }, { "id": "https://openalex.org/T11164", "display_name": "Mapping Forests with Lidar Remote Sensing", "count": 4, "subfield": { "id": "https://openalex.org/subfields/2305", "display_name": "Environmental Engineering" }, "field": { "id": "https://openalex.org/fields/23", "display_name": "Environmental Science" }, "domain": { "id": "https://openalex.org/domains/3", "display_name": "Physical Sciences" } }, { "id": "https://openalex.org/T13388", "display_name": "Factors Affecting Sagebrush Ecosystems and Wildlife Conservation", "count": 4, "subfield": { "id": "https://openalex.org/subfields/2303", "display_name": "Ecology" }, "field": { "id": "https://openalex.org/fields/23", "display_name": "Environmental Science" }, "domain": { "id": "https://openalex.org/domains/3", "display_name": "Physical Sciences" } }, { "id": "https://openalex.org/T10930", "display_name": "Global Flood Risk Assessment and Management", "count": 4, "subfield": { "id": "https://openalex.org/subfields/2306", "display_name": "Global and Planetary Change" }, "field": { "id": "https://openalex.org/fields/23", "display_name": "Environmental Science" }, "domain": { "id": "https://openalex.org/domains/3", "display_name": "Physical Sciences" } } ], "topic_share": [ { "id": "https://openalex.org/T10330", "display_name": "Hydrological Modeling and Water Resource Management", "value": 0.0003103, "subfield": { "id": "https://openalex.org/subfields/2312", "display_name": "Water Science and Technology" }, "field": { "id": "https://openalex.org/fields/23", "display_name": "Environmental Science" }, "domain": { "id": "https://openalex.org/domains/3", "display_name": "Physical Sciences" } }, { "id": "https://openalex.org/T11311", "display_name": "Biogeochemical Cycling of Nutrients in Aquatic Ecosystems", "value": 0.0003095, "subfield": { "id": "https://openalex.org/subfields/2304", "display_name": "Environmental Chemistry" }, "field": { "id": "https://openalex.org/fields/23", "display_name": "Environmental Science" }, "domain": { "id": "https://openalex.org/domains/3", "display_name": "Physical Sciences" } }, { "id": "https://openalex.org/T10889", "display_name": "Soil Erosion and Agricultural Sustainability", "value": 0.000294, "subfield": { "id": "https://openalex.org/subfields/1111", "display_name": "Soil Science" }, "field": { "id": "https://openalex.org/fields/11", "display_name": "Agricultural and Biological Sciences" }, "domain": { "id": "https://openalex.org/domains/1", "display_name": "Life Sciences" } }, { "id": "https://openalex.org/T10894", "display_name": "Groundwater Flow and Transport Modeling", "value": 0.0001724, "subfield": { "id": "https://openalex.org/subfields/2305", "display_name": "Environmental Engineering" }, "field": { "id": "https://openalex.org/fields/23", "display_name": "Environmental Science" }, "domain": { "id": "https://openalex.org/domains/3", "display_name": "Physical Sciences" } }, { "id": "https://openalex.org/T11312", "display_name": "Remote Sensing of Soil Moisture", "value": 0.000156, "subfield": { "id": "https://openalex.org/subfields/2305", "display_name": "Environmental Engineering" }, "field": { "id": "https://openalex.org/fields/23", "display_name": "Environmental Science" }, "domain": { "id": "https://openalex.org/domains/3", "display_name": "Physical Sciences" } }, { "id": "https://openalex.org/T10577", "display_name": "Ecological Dynamics of Riverine Landscapes", "value": 0.0001203, "subfield": { "id": "https://openalex.org/subfields/2303", "display_name": "Ecology" }, "field": { "id": "https://openalex.org/fields/23", "display_name": "Environmental Science" }, "domain": { "id": "https://openalex.org/domains/3", "display_name": "Physical Sciences" } }, { "id": "https://openalex.org/T10716", "display_name": "Mechanics and Transport in Unsaturated Soils", "value": 0.0001112, "subfield": { "id": "https://openalex.org/subfields/2205", "display_name": "Civil and Structural Engineering" }, "field": { "id": "https://openalex.org/fields/22", "display_name": "Engineering" }, "domain": { "id": "https://openalex.org/domains/3", "display_name": "Physical Sciences" } }, { "id": "https://openalex.org/T10555", "display_name": "Impact of Climate Change on Forest Wildfires", "value": 9.2e-05, "subfield": { "id": "https://openalex.org/subfields/2306", "display_name": "Global and Planetary Change" }, "field": { "id": "https://openalex.org/fields/23", "display_name": "Environmental Science" }, "domain": { "id": "https://openalex.org/domains/3", "display_name": "Physical Sciences" } }, { "id": "https://openalex.org/T10398", "display_name": "Stable Isotope Analysis of Groundwater and Precipitation", "value": 8.69e-05, "subfield": { "id": "https://openalex.org/subfields/1906", "display_name": "Geochemistry and Petrology" }, "field": { "id": "https://openalex.org/fields/19", "display_name": "Earth and Planetary Sciences" }, "domain": { "id": "https://openalex.org/domains/3", "display_name": "Physical Sciences" } }, { "id": "https://openalex.org/T10439", "display_name": "Adaptation to Climate Change in Agriculture", "value": 8.1e-05, "subfield": { "id": "https://openalex.org/subfields/1105", "display_name": "Ecology, Evolution, Behavior and Systematics" }, "field": { "id": "https://openalex.org/fields/11", "display_name": "Agricultural and Biological Sciences" }, "domain": { "id": "https://openalex.org/domains/1", "display_name": "Life Sciences" } }, { "id": "https://openalex.org/T12091", "display_name": "Carbon Dynamics in Peatland Ecosystems", "value": 7.4e-05, "subfield": { "id": "https://openalex.org/subfields/2303", "display_name": "Ecology" }, "field": { "id": "https://openalex.org/fields/23", "display_name": "Environmental Science" }, "domain": { "id": "https://openalex.org/domains/3", "display_name": "Physical Sciences" } }, { "id": "https://openalex.org/T10770", "display_name": "Digital Soil Mapping Techniques", "value": 5.99e-05, "subfield": { "id": "https://openalex.org/subfields/2305", "display_name": "Environmental Engineering" }, "field": { "id": "https://openalex.org/fields/23", "display_name": "Environmental Science" }, "domain": { "id": "https://openalex.org/domains/3", "display_name": "Physical Sciences" } }, { "id": "https://openalex.org/T10266", "display_name": "Global Forest Drought Response and Climate Change", "value": 5.48e-05, "subfield": { "id": "https://openalex.org/subfields/2306", "display_name": "Global and Planetary Change" }, "field": { "id": "https://openalex.org/fields/23", "display_name": "Environmental Science" }, "domain": { "id": "https://openalex.org/domains/3", "display_name": "Physical Sciences" } }, { "id": "https://openalex.org/T12383", "display_name": "Aeolian Geomorphology and Wind Erosion Dynamics", "value": 4.88e-05, "subfield": { "id": "https://openalex.org/subfields/1904", "display_name": "Earth-Surface Processes" }, "field": { "id": "https://openalex.org/fields/19", "display_name": "Earth and Planetary Sciences" }, "domain": { "id": "https://openalex.org/domains/3", "display_name": "Physical Sciences" } }, { "id": "https://openalex.org/T14106", "display_name": "Science-Policy Integration for Water Management", "value": 4.68e-05, "subfield": { "id": "https://openalex.org/subfields/2308", "display_name": "Management, Monitoring, Policy and Law" }, "field": { "id": "https://openalex.org/fields/23", "display_name": "Environmental Science" }, "domain": { "id": "https://openalex.org/domains/3", "display_name": "Physical Sciences" } }, { "id": "https://openalex.org/T12143", "display_name": "Understanding Human Connection to Places", "value": 4.58e-05, "subfield": { "id": "https://openalex.org/subfields/3312", "display_name": "Sociology and Political Science" }, "field": { "id": "https://openalex.org/fields/33", "display_name": "Social Sciences" }, "domain": { "id": "https://openalex.org/domains/2", "display_name": "Social Sciences" } }, { "id": "https://openalex.org/T11404", "display_name": "Deficit Irrigation for Agricultural Water Management", "value": 3.6e-05, "subfield": { "id": "https://openalex.org/subfields/1111", "display_name": "Soil Science" }, "field": { "id": "https://openalex.org/fields/11", "display_name": "Agricultural and Biological Sciences" }, "domain": { "id": "https://openalex.org/domains/1", "display_name": "Life Sciences" } }, { "id": "https://openalex.org/T10616", "display_name": "Precision Agriculture Technologies", "value": 3.52e-05, "subfield": { "id": "https://openalex.org/subfields/1110", "display_name": "Plant Science" }, "field": { "id": "https://openalex.org/fields/11", "display_name": "Agricultural and Biological Sciences" }, "domain": { "id": "https://openalex.org/domains/1", "display_name": "Life Sciences" } }, { "id": "https://openalex.org/T10004", "display_name": "Soil Carbon Dynamics and Nutrient Cycling in Ecosystems", "value": 3.29e-05, "subfield": { "id": "https://openalex.org/subfields/1111", "display_name": "Soil Science" }, "field": { "id": "https://openalex.org/fields/11", "display_name": "Agricultural and Biological Sciences" }, "domain": { "id": "https://openalex.org/domains/1", "display_name": "Life Sciences" } }, { "id": "https://openalex.org/T10535", "display_name": "Landslide Hazards and Risk Assessment", "value": 3.2e-05, "subfield": { "id": "https://openalex.org/subfields/2308", "display_name": "Management, Monitoring, Policy and Law" }, "field": { "id": "https://openalex.org/fields/23", "display_name": "Environmental Science" }, "domain": { "id": "https://openalex.org/domains/3", "display_name": "Physical Sciences" } }, { "id": "https://openalex.org/T11119", "display_name": "Urban Stormwater Management and Sustainable Drainage Systems", "value": 3.01e-05, "subfield": { "id": "https://openalex.org/subfields/2305", "display_name": "Environmental Engineering" }, "field": { "id": "https://openalex.org/fields/23", "display_name": "Environmental Science" }, "domain": { "id": "https://openalex.org/domains/3", "display_name": "Physical Sciences" } }, { "id": "https://openalex.org/T10669", "display_name": "Influence of Land Use on Stream Ecosystems", "value": 2.65e-05, "subfield": { "id": "https://openalex.org/subfields/2303", "display_name": "Ecology" }, "field": { "id": "https://openalex.org/fields/23", "display_name": "Environmental Science" }, "domain": { "id": "https://openalex.org/domains/3", "display_name": "Physical Sciences" } }, { "id": "https://openalex.org/T10564", "display_name": "Microbial Nitrogen Cycling in Wastewater Treatment Systems", "value": 2.6e-05, "subfield": { "id": "https://openalex.org/subfields/2310", "display_name": "Pollution" }, "field": { "id": "https://openalex.org/fields/23", "display_name": "Environmental Science" }, "domain": { "id": "https://openalex.org/domains/3", "display_name": "Physical Sciences" } }, { "id": "https://openalex.org/T11333", "display_name": "Arctic Permafrost Dynamics and Climate Change", "value": 2.37e-05, "subfield": { "id": "https://openalex.org/subfields/1902", "display_name": "Atmospheric Science" }, "field": { "id": "https://openalex.org/fields/19", "display_name": "Earth and Planetary Sciences" }, "domain": { "id": "https://openalex.org/domains/3", "display_name": "Physical Sciences" } }, { "id": "https://openalex.org/T12186", "display_name": "Phosphorus Recovery and Sustainable Management", "value": 2.36e-05, "subfield": { "id": "https://openalex.org/subfields/2311", "display_name": "Industrial and Manufacturing Engineering" }, "field": { "id": "https://openalex.org/fields/23", "display_name": "Environmental Science" }, "domain": { "id": "https://openalex.org/domains/3", "display_name": "Physical Sciences" } } ], "x_concepts": [ { "id": "https://openalex.org/C39432304", "wikidata": "https://www.wikidata.org/wiki/Q188847", "display_name": "Environmental science", "level": 0, "score": 91.1 }, { "id": "https://openalex.org/C127313418", "wikidata": "https://www.wikidata.org/wiki/Q1069", "display_name": "Geology", "level": 0, "score": 86.4 }, { "id": "https://openalex.org/C127413603", "wikidata": "https://www.wikidata.org/wiki/Q11023", "display_name": "Engineering", "level": 0, "score": 85.3 }, { "id": "https://openalex.org/C86803240", "wikidata": "https://www.wikidata.org/wiki/Q420", "display_name": "Biology", "level": 0, "score": 79.6 }, { "id": "https://openalex.org/C187320778", "wikidata": "https://www.wikidata.org/wiki/Q1349130", "display_name": "Geotechnical engineering", "level": 1, "score": 78.5 }, { "id": "https://openalex.org/C76886044", "wikidata": "https://www.wikidata.org/wiki/Q2883300", "display_name": "Hydrology (agriculture)", "level": 2, "score": 76.4 }, { "id": "https://openalex.org/C205649164", "wikidata": "https://www.wikidata.org/wiki/Q1071", "display_name": "Geography", "level": 0, "score": 72.8 }, { "id": "https://openalex.org/C18903297", "wikidata": "https://www.wikidata.org/wiki/Q7150", "display_name": "Ecology", "level": 1, "score": 68.1 }, { "id": "https://openalex.org/C41008148", "wikidata": "https://www.wikidata.org/wiki/Q21198", "display_name": "Computer science", "level": 0, "score": 57.6 }, { "id": "https://openalex.org/C119857082", "wikidata": "https://www.wikidata.org/wiki/Q2539", "display_name": "Machine learning", "level": 1, "score": 44.5 }, { "id": "https://openalex.org/C31972630", "wikidata": "https://www.wikidata.org/wiki/Q844240", "display_name": "Computer vision", "level": 1, "score": 42.9 }, { "id": "https://openalex.org/C150547873", "wikidata": "https://www.wikidata.org/wiki/Q947851", "display_name": "Watershed", "level": 2, "score": 41.9 }, { "id": "https://openalex.org/C95457728", "wikidata": "https://www.wikidata.org/wiki/Q309", "display_name": "History", "level": 0, "score": 39.8 }, { "id": "https://openalex.org/C121332964", "wikidata": "https://www.wikidata.org/wiki/Q413", "display_name": "Physics", "level": 0, "score": 39.3 }, { "id": "https://openalex.org/C166957645", "wikidata": "https://www.wikidata.org/wiki/Q23498", "display_name": "Archaeology", "level": 1, "score": 39.3 }, { "id": "https://openalex.org/C151730666", "wikidata": "https://www.wikidata.org/wiki/Q7205", "display_name": "Paleontology", "level": 1, "score": 35.6 }, { "id": "https://openalex.org/C114793014", "wikidata": "https://www.wikidata.org/wiki/Q52109", "display_name": "Geomorphology", "level": 1, "score": 33.0 }, { "id": "https://openalex.org/C118518473", "wikidata": "https://www.wikidata.org/wiki/Q11451", "display_name": "Agriculture", "level": 2, "score": 31.9 }, { "id": "https://openalex.org/C50477045", "wikidata": "https://www.wikidata.org/wiki/Q1444790", "display_name": "Surface runoff", "level": 2, "score": 29.8 }, { "id": "https://openalex.org/C58640448", "wikidata": "https://www.wikidata.org/wiki/Q42515", "display_name": "Cartography", "level": 1, "score": 29.3 }, { "id": "https://openalex.org/C185592680", "wikidata": "https://www.wikidata.org/wiki/Q2329", "display_name": "Chemistry", "level": 0, "score": 24.6 }, { "id": "https://openalex.org/C153294291", "wikidata": "https://www.wikidata.org/wiki/Q25261", "display_name": "Meteorology", "level": 1, "score": 24.1 }, { "id": "https://openalex.org/C192562407", "wikidata": "https://www.wikidata.org/wiki/Q228736", "display_name": "Materials science", "level": 0, "score": 23.6 }, { "id": "https://openalex.org/C178790620", "wikidata": "https://www.wikidata.org/wiki/Q11351", "display_name": "Organic chemistry", "level": 1, "score": 23.0 }, { "id": "https://openalex.org/C159390177", "wikidata": "https://www.wikidata.org/wiki/Q9161265", "display_name": "Soil science", "level": 1, "score": 22.5 } ], "counts_by_year": [ { "year": 2024, "works_count": 4, "cited_by_count": 136 }, { "year": 2023, "works_count": 13, "cited_by_count": 224 }, { "year": 2022, "works_count": 38, "cited_by_count": 253 }, { "year": 2021, "works_count": 7, "cited_by_count": 237 }, { "year": 2020, "works_count": 9, "cited_by_count": 217 }, { "year": 2019, "works_count": 6, "cited_by_count": 190 }, { "year": 2018, "works_count": 11, "cited_by_count": 156 }, { "year": 2017, "works_count": 17, "cited_by_count": 196 }, { "year": 2016, "works_count": 7, "cited_by_count": 140 }, { "year": 2015, "works_count": 12, "cited_by_count": 134 }, { "year": 2014, "works_count": 6, "cited_by_count": 126 }, { "year": 2013, "works_count": 10, "cited_by_count": 119 }, { "year": 2012, "works_count": 8, "cited_by_count": 103 } ], "works_api_url": "https://api.openalex.org/works?filter=author.id:A5057128395", "updated_date": "2024-08-21T23:44:33.856130", "created_date": "2023-07-21", "_id": "https://openalex.org/A5057128395" }, "ORCID": { "@context": "http://schema.org", "@type": "Person", "@id": "https://orcid.org/0000-0002-6921-4870", "mainEntityOfPage": "https://orcid.org/0000-0002-6921-4870", "givenName": "Erin", "familyName": "Brooks", "alumniOf": [ { "@type": "Organization", "@id": "grid.17635.36", "name": "University of Minnesota", "alternateName": "Agricultural & Biological Systems" }, { "@type": "Organization", "name": "University of Idaho", "alternateName": "Biological and Agricultural Engineering", "identifier": { "@type": "PropertyValue", "propertyID": "RINGGOLD", "value": "5640" } }, { "@type": "Organization", "@id": "grid.30064.31", "name": "Washington State University", "alternateName": "Agricultural Engineering" } ], "affiliation": [ { "@type": "Organization", "name": "University of Idaho", "alternateName": "Soil & Water Systems", "identifier": { "@type": "PropertyValue", "propertyID": "RINGGOLD", "value": "5640" } }, { "@type": "Organization", "name": "University of Idaho", "alternateName": "Biological Engineering", "identifier": { "@type": "PropertyValue", "propertyID": "RINGGOLD", "value": "5640" } }, { "@type": "Organization", "name": "University of Idaho", "alternateName": "Biological and Agricultural Engineering", "identifier": { "@type": "PropertyValue", "propertyID": "RINGGOLD", "value": "5640" } }, { "@type": "Organization", "name": "Cornell University", "alternateName": "Agricultural and Biological Engineering", "identifier": { "@type": "PropertyValue", "propertyID": "RINGGOLD", "value": "225069" } } ], "@reverse": { "creator": [ { "@type": "CreativeWork", "@id": "https://doi.org/10.1061/jidedh.ireng-10322", "name": "Deep Infiltration Model to Quantify Water Use Efficiency of Center-Pivot Irrigated Alfalfa", "identifier": { "@type": "PropertyValue", "propertyID": "doi", "value": "10.1061/jidedh.ireng-10322" } }, { "@type": "CreativeWork", "@id": "https://doi.org/10.3390/hydrology11060087", "name": "Estimating Drainage from Forest Water Reclamation Facilities Based on Drain Gauge Measurements", "identifier": { "@type": "PropertyValue", "propertyID": "doi", "value": "10.3390/hydrology11060087" } }, { "@type": "CreativeWork", "@id": "https://doi.org/10.5194/egusphere-egu24-16087", "name": "Assessing post-fire soil erosion and water contamination risk in European fire-affected catchmentswith WEPPcloud-EU WATAR watershed model", "identifier": { "@type": "PropertyValue", "propertyID": "doi", "value": "10.5194/egusphere-egu24-16087" } }, { "@type": "CreativeWork", "@id": "https://doi.org/10.3390/su16020645", "name": "Evaluating Intra-Field Spatial Variability for Nutrient Management Zone Delineation through Geospatial Techniques and Multivariate Analysis", "identifier": { "@type": "PropertyValue", "propertyID": "doi", "value": "10.3390/su16020645" } }, { "@type": "CreativeWork", "@id": "https://doi.org/10.1002/jeq2.20485", "name": "Uncertainty in phosphorus fluxes and budgets across the US long\u2010term agroecosystem research network", "identifier": { "@type": "PropertyValue", "propertyID": "doi", "value": "10.1002/jeq2.20485" } }, { "@type": "CreativeWork", "@id": "https://doi.org/10.3390/geosciences11100400", "name": "Tracing \u03b418O and \u03b42H in Source Waters and Recharge Pathways of a Fractured-Basalt and Interbedded-Sediment Aquifer, Columbia River Flood Basalt Province", "identifier": { "@type": "PropertyValue", "propertyID": "doi", "value": "10.3390/geosciences11100400" } }, { "@type": "CreativeWork", "@id": "https://doi.org/10.1016/j.foreco.2021.119312", "name": "Long-term response in nutrient load from commercial forest management operations in a mountainous watershed", "identifier": { "@type": "PropertyValue", "propertyID": "doi", "value": "10.1016/j.foreco.2021.119312" } }, { "@type": "CreativeWork", "@id": "https://doi.org/10.5194/ismc2021-61", "name": "Timely Decision Support for Watershed Management with WEPPcloud", "identifier": { "@type": "PropertyValue", "propertyID": "doi", "value": "10.5194/ismc2021-61" } }, { "@type": "CreativeWork", "@id": "https://doi.org/10.1002/hyp.13943", "name": "Effectiveness of post-fire salvage logging stream buffer management for hillslope erosion in the U.S. Inland Northwest Mountains", "identifier": [ { "@type": "PropertyValue", "propertyID": "eid", "value": "2-s2.0-85096875625" }, { "@type": "PropertyValue", "propertyID": "doi", "value": "10.1002/hyp.13943" } ] }, { "@type": "CreativeWork", "@id": "https://doi.org/10.1016/j.jhydrol.2020.125805", "name": "Evaluating the effects of timber harvest on hydrologically sensitive areas and hydrologic response", "identifier": [ { "@type": "PropertyValue", "propertyID": "eid", "value": "2-s2.0-85097722399" }, { "@type": "PropertyValue", "propertyID": "doi", "value": "10.1016/j.jhydrol.2020.125805" } ] }, { "@type": "CreativeWork", "@id": "https://doi.org/10.1016/j.jhydrol.2020.125021", "name": "Comparative analysis of water budgets across the U.S. long-term agroecosystem research network", "identifier": [ { "@type": "PropertyValue", "propertyID": "doi", "value": "10.1016/j.jhydrol.2020.125021" }, { "@type": "PropertyValue", "propertyID": "eid", "value": "2-s2.0-85084641680" } ] }, { "@type": "CreativeWork", "@id": "https://doi.org/10.1002/hyp.13882", "name": "Evaluating post-wildfire logging-slash cover treatment to reduce hillslope erosion after salvage logging using ground measurements and remote sensing", "identifier": [ { "@type": "PropertyValue", "propertyID": "doi", "value": "10.1002/hyp.13882" }, { "@type": "PropertyValue", "propertyID": "eid", "value": "2-s2.0-85090472217" } ] }, { "@type": "CreativeWork", "@id": "https://doi.org/10.1002/esp.4778", "name": "Interaction of wind and cold-season hydrologic processes on erosion from complex topography following wildfire in sagebrush steppe", "identifier": [ { "@type": "PropertyValue", "propertyID": "eid", "value": "2-s2.0-85078902921" }, { "@type": "PropertyValue", "propertyID": "doi", "value": "10.1002/esp.4778" } ] }, { "@type": "CreativeWork", "@id": "https://doi.org/10.1016/j.scitotenv.2019.134877", "name": "Modeling forest management effects on water and sediment yield from nested, paired watersheds in the interior Pacific Northwest, USA using WEPP", "identifier": [ { "@type": "PropertyValue", "propertyID": "eid", "value": "2-s2.0-85074685431" }, { "@type": "PropertyValue", "propertyID": "doi", "value": "10.1016/j.scitotenv.2019.134877" } ] }, { "@type": "CreativeWork", "@id": "https://doi.org/10.1016/j.jhydrol.2019.124400", "name": "Noble gases, dead carbon, and reinterpretation of groundwater ages and travel time in local aquifers of the Columbia River Basalt Group", "identifier": [ { "@type": "PropertyValue", "propertyID": "doi", "value": "10.1016/j.jhydrol.2019.124400" }, { "@type": "PropertyValue", "propertyID": "eid", "value": "2-s2.0-85076243730" } ] }, { "@type": "CreativeWork", "@id": "https://doi.org/10.1002/jeq2.20114", "name": "Sources and subsurface transport of dissolved reactive phosphorus in a semiarid, no-till catchment with complex topography", "identifier": [ { "@type": "PropertyValue", "propertyID": "doi", "value": "10.1002/jeq2.20114" }, { "@type": "PropertyValue", "propertyID": "eid", "value": "2-s2.0-85087835040" } ] }, { "@type": "CreativeWork", "@id": "https://doi.org/10.1016/j.jhydrol.2019.03.030", "name": "Development and application of the soil moisture routing (SMR) model to identify subfield-scale hydrologic classes in dryland cropping systems using the Budyko framework", "identifier": [ { "@type": "PropertyValue", "propertyID": "eid", "value": "2-s2.0-85063404714" }, { "@type": "PropertyValue", "propertyID": "doi", "value": "10.1016/j.jhydrol.2019.03.030" } ] }, { "@type": "CreativeWork", "@id": "https://doi.org/10.3390/hydrology6010015", "name": "Isotopic discrimination of aquifer recharge sources, subsystem connectivity and flow patterns in the South Fork Palouse River Basin, Idaho and Washington, USA", "identifier": [ { "@type": "PropertyValue", "propertyID": "doi", "value": "10.3390/hydrology6010015" }, { "@type": "PropertyValue", "propertyID": "eid", "value": "2-s2.0-85067487389" } ] }, { "@type": "CreativeWork", "@id": "https://doi.org/10.3389/fmicb.2019.01339", "name": "Mining the drilosphere: Bacterial communities and denitrifier abundance in a No-till wheat cropping system", "identifier": [ { "@type": "PropertyValue", "propertyID": "doi", "value": "10.3389/fmicb.2019.01339" }, { "@type": "PropertyValue", "propertyID": "eid", "value": "2-s2.0-85069057268" } ] }, { "@type": "CreativeWork", "@id": "https://doi.org/10.13031/trans.12326", "name": "A simulation study to estimate effects of wildfire and forest management on hydrology and sediment in a forested watershed, Northwestern U.S.", "identifier": [ { "@type": "PropertyValue", "propertyID": "doi", "value": "10.13031/trans.12326" }, { "@type": "PropertyValue", "propertyID": "eid", "value": "2-s2.0-85055877390" } ] }, { "@type": "CreativeWork", "@id": "https://doi.org/10.1016/j.geoderma.2017.11.044", "name": "Effects of land use on soil properties and hydrological processes at the point, plot, and catchment scale in volcanic soils near Turrialba, Costa Rica", "identifier": [ { "@type": "PropertyValue", "propertyID": "doi", "value": "10.1016/j.geoderma.2017.11.044" }, { "@type": "PropertyValue", "propertyID": "eid", "value": "2-s2.0-85037529308" } ] }, { "@type": "CreativeWork", "@id": "https://doi.org/10.1007/s10584-017-1950-z", "name": "Evaluating opportunities for an increased role of winter crops as adaptation to climate change in dryland cropping systems of the U.S. Inland Pacific Northwest", "identifier": [ { "@type": "PropertyValue", "propertyID": "doi", "value": "10.1007/s10584-017-1950-z" }, { "@type": "PropertyValue", "propertyID": "eid", "value": "2-s2.0-85017241843" } ] }, { "@type": "CreativeWork", "@id": "https://doi.org/10.2134/jeq2017.10.0412", "name": "Filter membrane effects on water-extractable phosphorus concentrations from soil", "identifier": [ { "@type": "PropertyValue", "propertyID": "doi", "value": "10.2134/jeq2017.10.0412" }, { "@type": "PropertyValue", "propertyID": "eid", "value": "2-s2.0-85043347702" } ] }, { "@type": "CreativeWork", "@id": "https://doi.org/10.1007/s11119-017-9517-6", "name": "Simulating field-scale variability and precision management with a 3D hydrologic cropping systems model", "identifier": [ { "@type": "PropertyValue", "propertyID": "doi", "value": "10.1007/s11119-017-9517-6" }, { "@type": "PropertyValue", "propertyID": "eid", "value": "2-s2.0-85017163425" } ] }, { "@type": "CreativeWork", "@id": "https://doi.org/10.1002/2017wr021307", "name": "A Field-Scale Sensor Network Data Set for Monitoring and Modeling the Spatial and Temporal Variation of Soil Water Content in a Dryland Agricultural Field", "identifier": [ { "@type": "PropertyValue", "propertyID": "doi", "value": "10.1002/2017wr021307" }, { "@type": "PropertyValue", "propertyID": "eid", "value": "2-s2.0-85040821350" } ] }, { "@type": "CreativeWork", "@id": "https://doi.org/10.1016/j.compag.2017.03.018", "name": "A pragmatic, automated approach for retroactive calibration of soil moisture sensors using a two-step, soil-specific correction", "identifier": [ { "@type": "PropertyValue", "propertyID": "doi", "value": "10.1016/j.compag.2017.03.018" }, { "@type": "PropertyValue", "propertyID": "eid", "value": "2-s2.0-85016462740" } ] }, { "@type": "CreativeWork", "@id": "https://doi.org/10.3389/fevo.2017.00050", "name": "Carbon and water budgets in multiple wheat-based cropping systems in the inland pacific northwest us: Comparison of cropsyst simulations with eddy covariance measurements", "identifier": [ { "@type": "PropertyValue", "propertyID": "eid", "value": "2-s2.0-85029350198" }, { "@type": "PropertyValue", "propertyID": "doi", "value": "10.3389/fevo.2017.00050" } ] }, { "@type": "CreativeWork", "@id": "https://doi.org/10.13031/aim.201701316", "name": "Designing erosion and nutrient control practices in watersheds in humid regions: Lessons learned", "identifier": [ { "@type": "PropertyValue", "propertyID": "doi", "value": "10.13031/aim.201701316" }, { "@type": "PropertyValue", "propertyID": "eid", "value": "2-s2.0-85035351939" } ] }, { "@type": "CreativeWork", "@id": "https://doi.org/10.1002/2017jg004148", "name": "Effects of Climatic Conditions and Management Practices on Agricultural Carbon and Water Budgets in the Inland Pacific Northwest USA", "identifier": [ { "@type": "PropertyValue", "propertyID": "doi", "value": "10.1002/2017jg004148" }, { "@type": "PropertyValue", "propertyID": "eid", "value": "2-s2.0-85037973656" } ] }, { "@type": "CreativeWork", "@id": "https://doi.org/10.3389/fenvs.2017.00023", "name": "Impact of climate change adaptation strategies on winter wheat and cropping system performance across precipitation gradients in the Inland Pacific Northwest, USA", "identifier": [ { "@type": "PropertyValue", "propertyID": "eid", "value": "2-s2.0-85026801524" }, { "@type": "PropertyValue", "propertyID": "doi", "value": "10.3389/fenvs.2017.00023" } ] }, { "@type": "CreativeWork", "@id": "https://doi.org/10.3389/fenvs.2017.00076", "name": "Integrating historic agronomic and policy lessons with new technologies to drive farmer decisions for farm and climate: The case of Inland Pacific Northwestern U.S.", "identifier": [ { "@type": "PropertyValue", "propertyID": "eid", "value": "2-s2.0-85040530119" }, { "@type": "PropertyValue", "propertyID": "doi", "value": "10.3389/fenvs.2017.00076" } ] }, { "@type": "CreativeWork", "@id": "https://doi.org/10.13031/trans.12035", "name": "Modeling streamflow in a snow-dominated forest watershed using the water erosion prediction project (WEPP) model", "identifier": [ { "@type": "PropertyValue", "propertyID": "eid", "value": "2-s2.0-85028839113" }, { "@type": "PropertyValue", "propertyID": "doi", "value": "10.13031/trans.12035" } ] }, { "@type": "CreativeWork", "@id": "https://doi.org/10.1111/1752-1688.12566", "name": "On the Role of Spatial, Temporal, and Climatic Forces on Stream Sediment Loading from Rural and Urban Ecosystems", "identifier": [ { "@type": "PropertyValue", "propertyID": "eid", "value": "2-s2.0-85030177017" }, { "@type": "PropertyValue", "propertyID": "doi", "value": "10.1111/1752-1688.12566" } ] }, { "@type": "CreativeWork", "@id": "https://doi.org/10.1002/hyp.11152", "name": "Water and nitrogen movement through a semiarid dryland agricultural catchment: Seasonal and decadal trends", "identifier": [ { "@type": "PropertyValue", "propertyID": "eid", "value": "2-s2.0-85016563143" }, { "@type": "PropertyValue", "propertyID": "doi", "value": "10.1002/hyp.11152" } ] }, { "@type": "CreativeWork", "@id": "https://doi.org/10.1016/j.agrformet.2015.11.019", "name": "Assessing carbon and water dynamics of no-till and conventional tillage cropping systems in the inland Pacific Northwest US using the eddy covariance method", "identifier": [ { "@type": "PropertyValue", "propertyID": "eid", "value": "2-s2.0-84954115457" }, { "@type": "PropertyValue", "propertyID": "doi", "value": "10.1016/j.agrformet.2015.11.019" } ] }, { "@type": "CreativeWork", "@id": "https://doi.org/10.1016/j.agrformet.2015.11.018", "name": "Assessing carbon dynamics at high and low rainfall agricultural sites in the inland Pacific Northwest US using the eddy covariance method", "identifier": [ { "@type": "PropertyValue", "propertyID": "eid", "value": "2-s2.0-84960393096" }, { "@type": "PropertyValue", "propertyID": "doi", "value": "10.1016/j.agrformet.2015.11.018" } ] }, { "@type": "CreativeWork", "@id": "https://doi.org/10.1007/s10040-016-1431-x", "name": "Identifying groundwater recharge connections in the Moscow (USA) sub-basin using isotopic tracers and a soil moisture routing model,Identification des cheminements d\u2019eau de la recharge d\u2019aquif\u00e8re dans le sous bassin de Moscou (Etats-Unis d\u2019Am\u00e9rique) en utilisant des traceurs isotopiques et un mod\u00e8le de routage de l\u2019humidit\u00e9 des sols,Identificando conex\u00f5es de recarga de \u00e1guas subterr\u00e2neas na sub-bacia de Moscow (EUA) utilizando tra\u00e7adores isot\u00f3picos e modelo de determina\u00e7\u00e3o de umidade do solo,La identificaci\u00f3n de las conexiones de recarga de las aguas subterr\u00e1neas en la subcuenca de Mosc\u00fa (EEUU) utilizando trazadores isot\u00f3picos y un modelo de enrutamiento de humedad del suelo", "identifier": [ { "@type": "PropertyValue", "propertyID": "eid", "value": "2-s2.0-84975475194" }, { "@type": "PropertyValue", "propertyID": "doi", "value": "10.1007/s10040-016-1431-x" } ] }, { "@type": "CreativeWork", "@id": "https://doi.org/10.1016/j.quascirev.2015.08.028", "name": "Key drivers controlling stable isotope variations in daily precipitation of Costa Rica: Caribbean Sea versus Eastern Pacific Ocean moisture sources", "identifier": [ { "@type": "PropertyValue", "propertyID": "doi", "value": "10.1016/j.quascirev.2015.08.028" }, { "@type": "PropertyValue", "propertyID": "eid", "value": "2-s2.0-84949676231" } ] }, { "@type": "CreativeWork", "@id": "https://doi.org/10.1016/j.jhydrol.2015.12.004", "name": "Watershed-scale evaluation of the Water Erosion Prediction Project (WEPP) model in the Lake Tahoe basin", "identifier": [ { "@type": "PropertyValue", "propertyID": "eid", "value": "2-s2.0-84951818357" }, { "@type": "PropertyValue", "propertyID": "doi", "value": "10.1016/j.jhydrol.2015.12.004" } ] }, { "@type": "CreativeWork", "@id": "https://doi.org/10.1111/1752-1688.12293", "name": "Agricultural BMP effectiveness and dominant hydrological flow paths: Concepts and a review", "identifier": [ { "@type": "PropertyValue", "propertyID": "doi", "value": "10.1111/1752-1688.12293" }, { "@type": "PropertyValue", "propertyID": "eid", "value": "2-s2.0-84926507629" } ] }, { "@type": "CreativeWork", "@id": "https://doi.org/10.1111/1752-1688.12296", "name": "Assessing BMP effectiveness and guiding BMP planning using process-based modeling", "identifier": [ { "@type": "PropertyValue", "propertyID": "eid", "value": "2-s2.0-84926518586" }, { "@type": "PropertyValue", "propertyID": "doi", "value": "10.1111/1752-1688.12296" } ] }, { "@type": "CreativeWork", "@id": "https://doi.org/10.1007/s10040-014-1191-4", "name": "Baseflow recession analysis in the inland Pacific Northwest of the United States,Analyse des r\u00e9cessions des d\u00e9bits de base dans l\u2019arri\u00e8re-pays du Pacifique Nord-Ouest des Etats-Unis d\u2019Am\u00e9rique,An\u00e1lise da recess\u00e3o do escoamento de base na parte continental do Pac\u00edfico noroeste dos Estados Unidos,An\u00e1lisis de la recesi\u00f3n del flujo base en noroeste continental del Pac\u00edfico de los Estados Unidos", "identifier": [ { "@type": "PropertyValue", "propertyID": "doi", "value": "10.1007/s10040-014-1191-4" }, { "@type": "PropertyValue", "propertyID": "eid", "value": "2-s2.0-84925534723" } ] }, { "@type": "CreativeWork", "@id": "https://doi.org/10.1061/9780784479322.019", "name": "Enhancements to the Water Erosion Prediction Project (WEPP) for Modeling Large Snow-Dominated Mountainous Forest Watersheds", "identifier": [ { "@type": "PropertyValue", "propertyID": "eid", "value": "2-s2.0-84958553006" }, { "@type": "PropertyValue", "propertyID": "doi", "value": "10.1061/9780784479322.019" } ] }, { "@type": "CreativeWork", "@id": "https://doi.org/10.1111/1752-1688.12297", "name": "Featured collection introduction: Synthesis and analysis of conservation effects assessment projects for improved water quality", "identifier": [ { "@type": "PropertyValue", "propertyID": "eid", "value": "2-s2.0-84926513588" }, { "@type": "PropertyValue", "propertyID": "doi", "value": "10.1111/1752-1688.12297" } ] }, { "@type": "CreativeWork", "@id": "https://doi.org/10.1002/2015wr016884", "name": "Hydrologic control of dissolved organic matter concentration and quality in a semiarid artificially drained agricultural catchment", "identifier": [ { "@type": "PropertyValue", "propertyID": "eid", "value": "2-s2.0-84956712638" }, { "@type": "PropertyValue", "propertyID": "doi", "value": "10.1002/2015wr016884" } ] }, { "@type": "CreativeWork", "@id": "https://doi.org/10.1080/10256016.2015.1008468", "name": "Isotope hydrology and baseflow geochemistry in natural and human-altered watersheds in the Inland Pacific Northwest, USA", "identifier": [ { "@type": "PropertyValue", "propertyID": "doi", "value": "10.1080/10256016.2015.1008468" }, { "@type": "PropertyValue", "propertyID": "eid", "value": "2-s2.0-84929289696" } ] }, { "@type": "CreativeWork", "@id": "https://doi.org/10.1111/1752-1688.12294", "name": "Variable source area hydrology modeling with the water erosion prediction project model", "identifier": [ { "@type": "PropertyValue", "propertyID": "eid", "value": "2-s2.0-84926517706" }, { "@type": "PropertyValue", "propertyID": "doi", "value": "10.1111/1752-1688.12294" } ] }, { "@type": "CreativeWork", "@id": "https://doi.org/10.1002/eco.1376", "name": "Ecohydrological analysis of Steelhead (Oncorhynchus mykiss) habitat in an effluent dependent stream in the Pacific Northwest, USA", "identifier": [ { "@type": "PropertyValue", "propertyID": "doi", "value": "10.1002/eco.1376" }, { "@type": "PropertyValue", "propertyID": "eid", "value": "2-s2.0-84897550482" } ] }, { "@type": "CreativeWork", "name": "Incorporating pesticide transport into the WEPP model for mulch tillage and no tillage plots with an underlying claypan soil", "identifier": { "@type": "PropertyValue", "propertyID": "eid", "value": "2-s2.0-84881346083" } }, { "@type": "CreativeWork", "@id": "https://doi.org/10.1007/s00267-012-9977-4", "name": "Model for prioritizing best management practice implementation: Sediment load reduction", "identifier": [ { "@type": "PropertyValue", "propertyID": "eid", "value": "2-s2.0-84871751878" }, { "@type": "PropertyValue", "propertyID": "doi", "value": "10.1007/s00267-012-9977-4" } ] }, { "@type": "CreativeWork", "name": "Modifying WEPP to improve streamflow simulation in a pacific northwest watershed", "identifier": { "@type": "PropertyValue", "propertyID": "eid", "value": "2-s2.0-84878544575" } }, { "@type": "CreativeWork", "name": "Seasonal change of wepp erodibility parameters for two fallow plots on a palouse silt loam", "identifier": { "@type": "PropertyValue", "propertyID": "eid", "value": "2-s2.0-84878621110" } }, { "@type": "CreativeWork", "@id": "https://doi.org/10.1111/j.1752-1688.2012.00680.x", "name": "A Simple Process-Based Snowmelt Routine to Model Spatially Distributed Snow Depth and Snowmelt in the SWAT Model", "identifier": [ { "@type": "PropertyValue", "propertyID": "eid", "value": "2-s2.0-84870562404" }, { "@type": "PropertyValue", "propertyID": "doi", "value": "10.1111/j.1752-1688.2012.00680.x" } ] }, { "@type": "CreativeWork", "name": "Hydropedology in Seasonally Dry Landscapes: The Palouse Region of the Pacific Northwest USA", "identifier": { "@type": "PropertyValue", "propertyID": "eid", "value": "2-s2.0-84884886784" } }, { "@type": "CreativeWork", "name": "Building process-based understanding for improved adaptation and management", "identifier": { "@type": "PropertyValue", "propertyID": "eid", "value": "2-s2.0-84861645032" } }, { "@type": "CreativeWork", "name": "Comparison of WEPP and SWAT for watershed hydrology and erosion prediction", "identifier": { "@type": "PropertyValue", "propertyID": "eid", "value": "2-s2.0-84861626935" } }, { "@type": "CreativeWork", "@id": "https://doi.org/10.1007/s10040-010-0695-9", "name": "Groundwater recharge in Pleistocene sediments overlying basalt aquifers in the Palouse Basin, USA: Modeling of distributed recharge potential and identification of water pathways", "identifier": [ { "@type": "PropertyValue", "propertyID": "doi", "value": "10.1007/s10040-010-0695-9" }, { "@type": "PropertyValue", "propertyID": "eid", "value": "2-s2.0-79952232563" } ] }, { "@type": "CreativeWork", "name": "Impact of socio-economic factors on synoptic assessment for prioritizing BMP implementation to reduce sediment load", "identifier": { "@type": "PropertyValue", "propertyID": "eid", "value": "2-s2.0-81255208140" } }, { "@type": "CreativeWork", "@id": "https://doi.org/10.5721/itjrs20114315", "name": "Snow cover analysis in Emilia-Romagna,Analisi della copertura nevosa in Emilia-Romagna", "identifier": [ { "@type": "PropertyValue", "propertyID": "eid", "value": "2-s2.0-80054848651" }, { "@type": "PropertyValue", "propertyID": "doi", "value": "10.5721/itjrs20114315" } ] }, { "@type": "CreativeWork", "@id": "https://doi.org/10.2489/jswc.65.6.404", "name": "Determinants of the adoption of conservation practices by farmers in the Northwest Wheat and Range Region", "identifier": [ { "@type": "PropertyValue", "propertyID": "eid", "value": "2-s2.0-78650001703" }, { "@type": "PropertyValue", "propertyID": "doi", "value": "10.2489/jswc.65.6.404" } ] }, { "@type": "CreativeWork", "@id": "https://doi.org/10.1016/j.advwatres.2009.10.013", "name": "Development and testing of a physically based, three-dimensional model of surface and subsurface hydrology", "identifier": [ { "@type": "PropertyValue", "propertyID": "doi", "value": "10.1016/j.advwatres.2009.10.013" }, { "@type": "PropertyValue", "propertyID": "eid", "value": "2-s2.0-71649099096" } ] }, { "@type": "CreativeWork", "@id": "https://doi.org/10.2489/jswc.65.6.331", "name": "Long-term sediment loading trends in the Paradise Creek watershed", "identifier": [ { "@type": "PropertyValue", "propertyID": "doi", "value": "10.2489/jswc.65.6.331" }, { "@type": "PropertyValue", "propertyID": "eid", "value": "2-s2.0-78650000239" } ] }, { "@type": "CreativeWork", "name": "Prioritizing watershed conservation for sediment load reduction in the Coastal Plain of Southwest Georgia", "identifier": { "@type": "PropertyValue", "propertyID": "eid", "value": "2-s2.0-79955370571" } }, { "@type": "CreativeWork", "@id": "https://doi.org/10.2489/jswc.65.1.22", "name": "WEPP simulations of dryland cropping systems in small drainages of northeastern Oregon", "identifier": [ { "@type": "PropertyValue", "propertyID": "eid", "value": "2-s2.0-77949607778" }, { "@type": "PropertyValue", "propertyID": "doi", "value": "10.2489/jswc.65.1.22" } ] }, { "@type": "CreativeWork", "@id": "https://doi.org/10.1016/j.foreco.2008.05.019", "name": "Dynamic riparian buffer widths from potential non-point source pollution areas in forested watersheds", "identifier": [ { "@type": "PropertyValue", "propertyID": "doi", "value": "10.1016/j.foreco.2008.05.019" }, { "@type": "PropertyValue", "propertyID": "eid", "value": "2-s2.0-46849084371" } ] }, { "@type": "CreativeWork", "@id": "https://doi.org/10.1016/j.catena.2007.05.011", "name": "Linking fragipans, perched water tables, and catchment-scale hydrological processes", "identifier": [ { "@type": "PropertyValue", "propertyID": "eid", "value": "2-s2.0-41449089997" }, { "@type": "PropertyValue", "propertyID": "doi", "value": "10.1016/j.catena.2007.05.011" } ] }, { "@type": "CreativeWork", "@id": "https://doi.org/10.1002/hyp.6230", "name": "Distributed and integrated response of a geographic information system-based hydrologic model in the eastern Palouse region, Idaho", "identifier": [ { "@type": "PropertyValue", "propertyID": "eid", "value": "2-s2.0-33846399470" }, { "@type": "PropertyValue", "propertyID": "doi", "value": "10.1002/hyp.6230" } ] }, { "@type": "CreativeWork", "@id": "https://doi.org/10.1061/(asce)1084-0699(2006)11:5(418)", "name": "Global positioning system/GIS-based approach for modeling erosion from large road networks", "identifier": [ { "@type": "PropertyValue", "propertyID": "eid", "value": "2-s2.0-33747233752" }, { "@type": "PropertyValue", "propertyID": "doi", "value": "10.1061/(asce)1084-0699(2006)11:5(418)" } ] }, { "@type": "CreativeWork", "@id": "https://doi.org/10.1016/j.jhydrol.2004.05.002", "name": "Process-based snowmelt modeling: Does it require more input data than temperature-index modeling?", "identifier": [ { "@type": "PropertyValue", "propertyID": "eid", "value": "2-s2.0-9944265083" }, { "@type": "PropertyValue", "propertyID": "doi", "value": "10.1016/j.jhydrol.2004.05.002" } ] }, { "@type": "CreativeWork", "@id": "https://doi.org/10.1029/2003wr002858", "name": "A hillslope-scale experiment to measure lateral saturated hydraulic conductivity", "identifier": [ { "@type": "PropertyValue", "propertyID": "doi", "value": "10.1029/2003wr002858" }, { "@type": "PropertyValue", "propertyID": "eid", "value": "2-s2.0-2442650651" } ] }, { "@type": "CreativeWork", "@id": "https://doi.org/10.1023/b:enmo.0000032096.13649.92", "name": "Application of SMR to modeling watersheds in the Catskill Mountains", "identifier": [ { "@type": "PropertyValue", "propertyID": "doi", "value": "10.1023/b:enmo.0000032096.13649.92" }, { "@type": "PropertyValue", "propertyID": "eid", "value": "2-s2.0-3542991533" } ] }, { "@type": "CreativeWork", "@id": "https://doi.org/10.1016/j.jhydrol.2003.07.005", "name": "Application of two hydrologic models with different runoff mechanisms to a hillslope dominated watershed in the northeastern US: A comparison of HSPF and SMR", "identifier": [ { "@type": "PropertyValue", "propertyID": "doi", "value": "10.1016/j.jhydrol.2003.07.005" }, { "@type": "PropertyValue", "propertyID": "eid", "value": "2-s2.0-0347693384" } ] }, { "@type": "CreativeWork", "@id": "https://doi.org/10.1097/01.ss.0000106406.84926.22", "name": "Hydrologic processes in valley soilscapes of the eastern Palouse Basin in northern Idaho", "identifier": [ { "@type": "PropertyValue", "propertyID": "doi", "value": "10.1097/01.ss.0000106406.84926.22" }, { "@type": "PropertyValue", "propertyID": "eid", "value": "2-s2.0-0346991345" } ] }, { "@type": "CreativeWork", "name": "Evaluation of soluble phosphorus loading from manure-applied fields under various spreading strategies", "identifier": { "@type": "PropertyValue", "propertyID": "eid", "value": "2-s2.0-0035723210" } }, { "@type": "CreativeWork", "@id": "https://doi.org/10.1023/a:1011877214723", "name": "Residual phosphorus in runoff from successional forest on abandoned agricultural land: 1. Biogeochemical and hydrological processes", "identifier": [ { "@type": "PropertyValue", "propertyID": "doi", "value": "10.1023/a:1011877214723" }, { "@type": "PropertyValue", "propertyID": "eid", "value": "2-s2.0-0034788533" } ] }, { "@type": "CreativeWork", "name": "Hydrologically sensitive areas: Variable source area hydrology implications for water quality risk assessment", "identifier": { "@type": "PropertyValue", "propertyID": "eid", "value": "2-s2.0-0034529890" } }, { "@type": "CreativeWork", "@id": "https://doi.org/10.1061/(asce)0733-9496(2000)126:5(320)", "name": "Seasonal risk analysis for floodplains in the Delaware River Basin", "identifier": [ { "@type": "PropertyValue", "propertyID": "doi", "value": "10.1061/(asce)0733-9496(2000)126:5(320)" }, { "@type": "PropertyValue", "propertyID": "eid", "value": "2-s2.0-0034282934" } ] }, { "@type": "CreativeWork", "@id": "https://doi.org/10.1061/(asce)0733-9437(2000)126:5(304)", "name": "Water distribution management in small West African canal systems", "identifier": [ { "@type": "PropertyValue", "propertyID": "eid", "value": "2-s2.0-0034281929" }, { "@type": "PropertyValue", "propertyID": "doi", "value": "10.1061/(asce)0733-9437(2000)126:5(304)" } ] }, { "@type": "CreativeWork", "@id": "https://doi.org/10.1002/(sici)1099-1085(19990430)13:6<805::aid-hyp754>3.0.co;2-m", "name": "A GIS-based variable source area hydrology model", "identifier": [ { "@type": "PropertyValue", "propertyID": "doi", "value": "10.1002/(sici)1099-1085(19990430)13:6<805::aid-hyp754>3.0.co;2-m" }, { "@type": "PropertyValue", "propertyID": "eid", "value": "2-s2.0-0033617512" } ] }, { "@type": "CreativeWork", "@id": "https://doi.org/10.2134/jeq1998.00472425002700060018x", "name": "Impacts of historical changes in land use and dairy herds on water quality in the catskills mountains", "identifier": [ { "@type": "PropertyValue", "propertyID": "eid", "value": "2-s2.0-0032211954" }, { "@type": "PropertyValue", "propertyID": "doi", "value": "10.2134/jeq1998.00472425002700060018x" } ] } ] }, "identifier": { "@type": "PropertyValue", "propertyID": "Scopus Author ID", "value": "7102304929" } }
}