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Analysis of projected water availability with current basin management plan, Pajaro Valley, California

机译:使用加利福尼亚州帕哈罗河谷目前的流域管理计划对预计的可用水量进行分析

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摘要

The projection and analysis of the Pajaro Valley Hydrologic Model (PVHM) 34 years into the future using MODFLOW with the Farm Process (MF-FMP) facilitates assessment of potential future water availability. The projection is facilitated by the integrated hydrologic model, MF-FMP that fully couples the simulation of the use and movement of water from precipitation, streamflow, runoff, groundwater flow, and consumption by natural and agricultural vegetation throughout the hydrologic system at all times. MF-FMP allows for more complete analysis of conjunctive-use water-resource systems than previously possible with MODFLOW by combining relevant aspects of the landscape with the groundwater and surface-water components. This analysis is accomplished using distributed cell-by-cell supply-constrained and demand-driven components across the landscape within "water-balance subregions" (WBS) comprised of one or more model cells that can represent a single farm, a group of farms, watersheds, or other hydrologic or geopolitical entities. Analysis of conjunctive use would be difficult without embedding the fully coupled supply-and-demand into a fully coupled simulation, and are difficult to estimate a priori.
机译:使用MODFLOW和农场过程(MF-FMP)对未来34年的Pajaro谷水文模型(PVHM)进行预测和分析,有助于评估未来可能的水利用量。集成的水文模型MF-FMP促进了这一预测,该模型将模拟,水流在整个水文系统中的降水,水流,径流,地下水流量以及自然和农业植被的消耗与使用之间的模拟完全耦合在一起。通过将景观的相关方面与地下水和地表水成分结合起来,MF-FMP可以比以前使用MODFLOW进行联合使用的水资源系统的更完整的分析。该分析是使用“水平衡子区域”(WBS)中分布在各个区域的逐个单元的供应受限和需求驱动的组件完成的,该组件由一个或多个可以代表一个农场,一组农场的模型单元组成,流域或其他水文或地缘政治实体。如果不将完全耦合的供求关系嵌入到完全耦合的模拟中,那么联合使用的分析将很困难,并且很难先验估计。

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