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沿海平原含水层中人工回灌地下水的示范:经验教训

Demonstration of Managed Aquifer Recharge in a Coastal Plain Aquifer: Lessons Learned.

作者信息

Martinez Meredith B, Widdowson Mark A, Bott Charles, Holloway Dan, Heisig-Mitchell Jamie, Wilson Christopher

机构信息

Virginia Tech, Blacksburg, VA, USA.

The Charles E. Via Jr. Department of Civil and Environmental Engineering, Virginia Tech, 750 Drillfield Drive, 200 Patton Hall, Blacksburg, Virginia, 24061, USA.

出版信息

Ground Water. 2022 Sep;60(5):668-674. doi: 10.1111/gwat.13197. Epub 2022 Apr 5.

DOI:10.1111/gwat.13197
PMID:35302237
Abstract

The sustainable water initiative for tomorrow (SWIFT) is a 378,000 m /day (100 MGD) managed aquifer recharge (MAR) program designed by the Hampton Roads Sanitation District (HRSD) to rehabilitate the Potomac Aquifer System (PAS) in the Coastal Plain of Eastern Virginia. Groundwater is a primary water source in Eastern Virginia with over 93% of reported use derived from the PAS. Starting in May 2018, HRSD has operated a 3780 m /day (1.0 MGD) MAR demonstration facility at the SWIFT Research Center (SWIFT-RC) in Suffolk, Virginia. The primary aim of the SWIFT-RC is to demonstrate, at a meaningful scale, the feasibility of MAR using deep well recharge into confined PAS hydrostratigraphic unit. The SWIFT-RC employs advanced water treatment technology to bring secondary effluent from an HRSD wastewater treatment plant to drinking water standards. Lessons learned include the evaluation and selection of a multiple barrier carbon-based treatment system to ensure water quality and maintain geochemical compatibility between MAR water and native groundwater, and the evaluation and selection of aluminum chlorohydrate for stabilizing aquifer clays immediately around the well to accept the fresher recharge water. The distribution of flow in the SWIFT-RC multiscreen recharge well and associated well injectivity were variable with time resulting from changing conditions in the well. Dynamic recharge well performance was quantified through the combined analysis of intrinsic and artificial tracer transport, in situ flowmeter testing, and water level analysis. Monitoring well nests and a depth-discrete sampling system supported a robust sampling plan to analyze chemical transport and attenuation in SWIFT-RC groundwater.

摘要

明日可持续水倡议(SWIFT)是汉普顿路卫生区(HRSD)设计的一项日处理量为378,000立方米(100百万加仑/天)的管理含水层补给(MAR)计划,旨在修复弗吉尼亚州东部沿海平原的波托马克含水层系统(PAS)。地下水是弗吉尼亚州东部的主要水源,据报告超过93%的用水来自PAS。从2018年5月开始,HRSD在弗吉尼亚州萨福克的SWIFT研究中心(SWIFT-RC)运营了一个日处理量为3780立方米(1.0百万加仑/天)的MAR示范设施。SWIFT-RC的主要目标是在有意义的规模上证明通过深井补给到承压PAS水文地层单元进行MAR的可行性。SWIFT-RC采用先进的水处理技术,将HRSD废水处理厂的二级出水提升到饮用水标准。经验教训包括评估和选择基于碳的多重屏障处理系统,以确保水质并维持MAR水与原生地下水之间的地球化学兼容性,以及评估和选择碱式氯化铝来稳定井周围的含水层粘土,以接纳更新鲜的补给水源。由于井内条件变化,SWIFT-RC多筛管补给井中的水流分布和相关的井注入能力随时间变化。通过对本征和人工示踪剂运移、现场流量计测试以及水位分析的综合分析,对动态补给井性能进行了量化。监测井组和深度离散采样系统支持了一个强大的采样计划,以分析SWIFT-RC地下水中的化学物质运移和衰减情况。

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