Item talk:Q58168: Difference between revisions
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{ | |||
The Honolulu Board of Water Supply is currently concerned with the possibility of bacteria in the pumped water of the | "USGS Publications Warehouse": { | ||
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The surface-water losses were evaluated with continuous groundwater-level data from the | "@type": "CreativeWork", | ||
"additionalType": "USGS Numbered Series", | |||
"name": "Measuring surface-water loss in Honouliuli Stream near the \u2018Ewa Shaft, O\u2018ahu, Hawai\u2018i", | |||
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"@type": "PropertyValue", | |||
"propertyID": "USGS Publications Warehouse IndexID", | |||
"value": "sir20175042", | |||
"url": "https://pubs.usgs.gov/publication/sir20175042" | |||
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"propertyID": "USGS Publications Warehouse Internal ID", | |||
"value": 70187585 | |||
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"propertyID": "DOI", | |||
"value": "10.3133/sir20175042", | |||
"url": "https://doi.org/10.3133/sir20175042" | |||
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"datePublished": "2017", | |||
"dateModified": "2017-06-22", | |||
"abstract": "The Honolulu Board of Water Supply is currently concerned with the possibility of bacteria in the pumped water of the \u2018Ewa Shaft (State well 3-2202-21). Groundwater from the \u2018Ewa Shaft could potentially be used to meet future potable water needs in the \u2018Ewa area on the island of O\u2018ahu. The source of the bacteria in the pumped water is unknown, although previous studies indicate that surface water may be lost to the subsurface near the site. The \u2018Ewa Shaft consists of a vertical shaft, started near the south bank of Honouliuli Stream at an altitude of about 161 feet, and two horizontal infiltration tunnels near sea level. The shaft extracts groundwater from near the top of the freshwater lens in the Waipahu-Waiawa aquifer system within the greater Pearl Harbor Aquifer Sector, a designated Water Management Area.The surface-water losses were evaluated with continuous groundwater-level data from the \u2018Ewa Shaft and a nearby monitoring well, continuous stream-discharge data from U.S. Geological Survey streamflow-gaging station 16212490 (Honouliuli Stream at H-1 Freeway near Waipahu), and seepage-run measurements in Honouliuli Stream and its tributary. During storms, discharge at the Honouliuli Stream gaging station increases and groundwater levels at \u2018Ewa Shaft and a nearby monitoring well also increase. The concurrent increase in water levels at \u2018Ewa Shaft and the nearby monitoring well during storms indicates that regional groundwater-level changes related to increased recharge, reduced withdrawals (due to a decrease in demand during periods of rainfall), or both may be occurring; although these data do not preclude the possibility of local recharge from Honouliuli Stream. Discharge measurements from two seepage runs indicate that surface water in the immediate area adjacent to \u2018Ewa Shaft infiltrates into the streambed and may later reach the groundwater system developed by the \u2018Ewa Shaft. The estimated seepage loss rates in the vicinity of \u2018Ewa Shaft from the two seepage runs generally ranged from 0.27 to 1.78 million gallons per day per mile of stream reach; although higher seepage rates may occur during periods of higher discharge in Honouliuli Stream. A potential source of bacteria in \u2018Ewa Shaft maybe related to seepage from Honouliuli Stream; however, other sources of bacteria were not studied and cannot be excluded.", | |||
"description": "vi, 16 p.", | |||
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"name": "Rosa, Sarah N. snrosa@usgs.gov", | |||
"givenName": "Sarah N.", | |||
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"name": "Pacific Islands Water Science Center", | |||
"url": "https://www.usgs.gov/centers/pacific-islands-water-science-center" | |||
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Latest revision as of 23:38, 14 August 2024
{
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Groundwater from the \u2018Ewa Shaft could potentially be used to meet future potable water needs in the \u2018Ewa area on the island of O\u2018ahu. The source of the bacteria in the pumped water is unknown, although previous studies indicate that surface water may be lost to the subsurface near the site. The \u2018Ewa Shaft consists of a vertical shaft, started near the south bank of Honouliuli Stream at an altitude of about 161 feet, and two horizontal infiltration tunnels near sea level. The shaft extracts groundwater from near the top of the freshwater lens in the Waipahu-Waiawa aquifer system within the greater Pearl Harbor Aquifer Sector, a designated Water Management Area.The surface-water losses were evaluated with continuous groundwater-level data from the \u2018Ewa Shaft and a nearby monitoring well, continuous stream-discharge data from U.S. Geological Survey streamflow-gaging station 16212490 (Honouliuli Stream at H-1 Freeway near Waipahu), and seepage-run measurements in Honouliuli Stream and its tributary. During storms, discharge at the Honouliuli Stream gaging station increases and groundwater levels at \u2018Ewa Shaft and a nearby monitoring well also increase. The concurrent increase in water levels at \u2018Ewa Shaft and the nearby monitoring well during storms indicates that regional groundwater-level changes related to increased recharge, reduced withdrawals (due to a decrease in demand during periods of rainfall), or both may be occurring; although these data do not preclude the possibility of local recharge from Honouliuli Stream. Discharge measurements from two seepage runs indicate that surface water in the immediate area adjacent to \u2018Ewa Shaft infiltrates into the streambed and may later reach the groundwater system developed by the \u2018Ewa Shaft. The estimated seepage loss rates in the vicinity of \u2018Ewa Shaft from the two seepage runs generally ranged from 0.27 to 1.78 million gallons per day per mile of stream reach; although higher seepage rates may occur during periods of higher discharge in Honouliuli Stream. 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