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An Integrated Approach Toward Sustainability via Groundwater Banking in the Southern Central Valley, California

机译:加利福尼亚州中央山谷地下水银行的可持续性综合方法

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摘要

Intensive groundwater withdrawals in California have resulted in depletion of streams and aquifers in some regions. Agricultural managed aquifer recharge (Ag-MAR) initiatives have recently been piloted in California to mitigate the effects of unsustainable groundwater withdrawals. These initiatives rely on capturing wet-year water and spreading it on large areas of irrigated agricultural lands to enhance recharge to aquifers. While recharge studies typically consider local effects on aquifer storage, few studies have investigated Ag-MAR benefits and challenges at a regional scale. Here we used the Integrated Water Flow Model, to evaluate how Ag-MAR projects can affect streamflows, diversions, pumping, and unsaturated zone flows in the southern Central Valley, California. We further tested the sensitivity of three different spatial patterns of Ag-MAR, each chosen based on different thresholds of soil suitability, on the hydrologic system. This study investigates how the distribution of Ag-MAR lands benefit the regional groundwater system and other water balance components. The results suggest that Ag-MAR benefits vary as a function of the location of Ag-MAR lands. Stream-aquifer interactions play a crucial factor in determining the ability to increase groundwater storage in overdrafted basins. The results also indicate that Ag-MAR projects conducted during the November-April recharge season have implications for water rights outside of the Ag-MAR season. If not properly monitored, Ag-MAR can cause a rise of groundwater table into the root zone, negatively impacting sensitive crops. Our work also highlights the benefits of using an integrated hydrologic and management model to evaluate Ag-MAR at a regional scale.
机译:加利福尼亚州的密集地下水撤销导致一些地区的溪流和含水层枯竭。农业管理含水层充值(AG-MAR)举措最近在加利福尼亚举行了驾驶,以减轻不可持续的地下水提款的影响。这些举措依赖于捕获潮湿的水,并将其传播到灌溉农业土地的大面积上,以增强对含水层的充值。虽然充电研究通常会考虑对含水层储存的局部影响,但很少有研究则在区域规模上调查了AG-MAR福利和挑战。在这里,我们使用了集成的水流模型,评估了AG-MAR项目如何影响南部中央山谷,加利福尼亚州的流动流出,转移,泵送和不饱和区流动。我们进一步测试了三种不同空间图案的AG-MAR的敏感性,每个不同的土壤适宜性阈值选择,在水文系统上。本研究调查了AG-MAR土地的分布如何使区域地下水系统和其他水平衡组成部分受益。结果表明,AG-MAR福利随着AG-MAR土地的位置而变化。流含水层相互作用在确定将地下水储存中覆盖盆地中的地下水储存的能力发挥关键因素。结果还表明,在4月至4月份充电季节进行的AG-MAR项目对Ag-Mar季节之外的水权有影响。如果未正确监测,Ag-Mar会导致地下水位的升高到根区,对敏感作物产生负面影响。我们的工作还突出了使用综合水文和管理模式以区域规模评估AG-MAR的好处。

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