Item talk:Q250341
From geokb
{
"USGS Publications Warehouse": { "@context": "https://schema.org", "@type": "Article", "additionalType": "Journal Article", "name": "Modeling the potential impact of seasonal and inactive multi-aquifer wells on contaminant movement to public water-supply wells", "identifier": [ { "@type": "PropertyValue", "propertyID": "USGS Publications Warehouse IndexID", "value": "70003965", "url": "https://pubs.usgs.gov/publication/70003965" }, { "@type": "PropertyValue", "propertyID": "USGS Publications Warehouse Internal ID", "value": 70003965 }, { "@type": "PropertyValue", "propertyID": "DOI", "value": "10.1111/j.1752-1688.2011.00526.x", "url": "https://doi.org/10.1111/j.1752-1688.2011.00526.x" } ], "journal": { "@type": "Periodical", "name": "Journal of the American Water Resources Association", "volumeNumber": "47", "issueNumber": "3" }, "inLanguage": "en", "isPartOf": [ { "@type": "CreativeWorkSeries", "name": "Journal of the American Water Resources Association" } ], "datePublished": "2011", "dateModified": "2018-09-19", "abstract": "Wells screened across multiple aquifers can provide pathways for the movement of surprisingly large volumes of groundwater to confined aquifers used for public water supply (PWS). Using a simple numerical model, we examine the impact of several pumping scenarios on leakage from an unconfined aquifer to a confined aquifer and conclude that a single inactive multi-aquifer well can contribute nearly 10% of total PWS well flow over a wide range of pumping rates. This leakage can occur even when the multi-aquifer well is more than a kilometer from the PWS well. The contribution from multi-aquifer wells may be greater under conditions where seasonal pumping (e.g., irrigation) creates large, widespread downward hydraulic gradients between aquifers. Under those conditions, water can continue to leak down a multi-aquifer well from an unconfined aquifer to a confined aquifer even when those multi-aquifer wells are actively pumped. An important implication is that, if an unconfined aquifer is contaminated, multi-aquifer wells can increase the vulnerability of a confined-aquifer PWS well.", "description": "9 p.", "publisher": { "@type": "Organization", "name": "Wiley" }, "author": [ { "@type": "Person", "name": "Johnson, R.L.", "givenName": "R.L.", "familyName": "Johnson", "affiliation": [ { "@type": "Organization", "name": "Colorado State University, Fort Collins, Colorado" } ] }, { "@type": "Person", "name": "Eberts, S. M.", "givenName": "S. M.", "familyName": "Eberts" }, { "@type": "Person", "name": "Clark, B.R.", "givenName": "B.R.", "familyName": "Clark" }, { "@type": "Person", "name": "Kauffman, L. J.", "givenName": "L. J.", "familyName": "Kauffman" }, { "@type": "Person", "name": "Landon, M.K.", "givenName": "M.K.", "familyName": "Landon", "identifier": { "@type": "PropertyValue", "propertyID": "ORCID", "value": "0000-0002-5766-0494", "url": "https://orcid.org/0000-0002-5766-0494" } } ], "funder": [ { "@type": "Organization", "name": "California Water Science Center", "url": "https://www.usgs.gov/centers/california-water-science-center" }, { "@type": "Organization", "name": "Ohio Water Science Center", "url": "https://www.usgs.govhttps://www.usgs.gov/centers/oki-water" } ] }, "OpenAlex": { "abstract_inverted_index": { "Wells": [ 0 ], "screened": [ 1 ], "across": [ 2 ], "multiple": [ 3 ], "aquifers": [ 4, 19 ], "can": [ 5, 57, 75, 118, 155 ], "provide": [ 6 ], "pathways": [ 7 ], "for": [ 8, 21 ], "the": [ 9, 33, 79, 88, 157 ], "movement": [ 10 ], "of": [ 11, 15, 35, 61, 70, 159 ], "surprisingly": [ 12 ], "large": [ 13 ], "volumes": [ 14 ], "groundwater": [ 16 ], "to": [ 17, 45, 120, 130 ], "confined": [ 18, 47, 132 ], "used": [ 20 ], "public": [ 22 ], "water": [ 23, 117 ], "supply": [ 24 ], "(PWS).": [ 25 ], "Using": [ 26 ], "a": [ 27, 46, 52, 67, 85, 123, 131, 160 ], "simple": [ 28 ], "numerical": [ 29 ], "model,": [ 30 ], "we": [ 31 ], "examine": [ 32 ], "impact": [ 34 ], "several": [ 36 ], "pumping": [ 37, 71, 103 ], "scenarios": [ 38 ], "on": [ 39 ], "leakage": [ 40, 74 ], "from": [ 41, 87, 93, 126 ], "an": [ 42, 127, 148 ], "unconfined": [ 43, 128, 149 ], "aquifer": [ 44, 48, 129, 133, 150 ], "and": [ 49 ], "conclude": [ 50 ], "that": [ 51 ], "single": [ 53 ], "inactive": [ 54 ], "multi-aquifer": [ 55, 80, 94, 124, 137, 153 ], "well": [ 56, 64, 81, 125 ], "contribute": [ 58 ], "nearly": [ 59 ], "10%": [ 60 ], "total": [ 62 ], "PWS": [ 63, 89, 162 ], "flow": [ 65 ], "over": [ 66 ], "wide": [ 68 ], "range": [ 69 ], "rates.": [ 72 ], "This": [ 73 ], "occur": [ 76 ], "even": [ 77, 134 ], "when": [ 78, 135 ], "is": [ 82, 145, 151 ], "more": [ 83 ], "than": [ 84 ], "kilometer": [ 86 ], "well.": [ 90, 163 ], "The": [ 91 ], "contribution": [ 92 ], "wells": [ 95, 138, 154 ], "may": [ 96 ], "be": [ 97 ], "greater": [ 98 ], "under": [ 99 ], "conditions": [ 100 ], "where": [ 101 ], "seasonal": [ 102 ], "(e.g.,": [ 104 ], "irrigation)": [ 105 ], "creates": [ 106 ], "large,": [ 107 ], "widespread": [ 108 ], "downward": [ 109 ], "hydraulic": [ 110 ], "gradients": [ 111 ], "between": [ 112 ], "aquifers.": [ 113 ], "Under": [ 114 ], "those": [ 115, 136 ], "conditions,": [ 116 ], "continue": [ 119 ], "leak": [ 121 ], "down": [ 122 ], "are": [ 139 ], "actively": [ 140 ], "pumped.": [ 141 ], "An": [ 142 ], "important": [ 143 ], "implication": [ 144 ], "that,": [ 146 ], "if": [ 147 ], "contaminated,": [ 152 ], "increase": [ 156 ], "vulnerability": [ 158 ], "confined-aquifer": [ 161 ] }, "apc_list": { "value": 3000, "currency": "USD", "value_usd": 3000, "provenance": "doaj" }, "apc_paid": null, "authorships": [ { "author_position": "first", "author": { "id": "https://openalex.org/A5015541542", "display_name": "Richard L. 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