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首页> 外文期刊>Journal of Hydrology >Development and application of a comprehensive simulation model to evaluate impacts of watershed structures and irrigation water use on streamflow and groundwater: the case of Wet Walnut Creek Watershed, Kansas, USA
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Development and application of a comprehensive simulation model to evaluate impacts of watershed structures and irrigation water use on streamflow and groundwater: the case of Wet Walnut Creek Watershed, Kansas, USA

机译:评估流域结构和灌溉用水对水流和地下水影响的综合模拟模型的开发和应用:以美国堪萨斯州的湿核桃溪流域为例

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This paper presents the results of a comprehensive modeling study of surface and groundwater systems, including stream-aquifer interactions, for the Wet Walnut Creek Watershed in west-central Kansas. The main objective of this study was to assess the impacts of watershed structures and irrigation water use on streamflow and groundwater levels, which in turn affect availability of water for the Cheyenne Bottoms Wildlife Refuge Management area. The surface-water flow model, POTYLDR, and the,groundwater flow model, MODFLOW, were combined into an integrated, watershed-scale, continuous simulation model. Major revisions and enhancements were made to the POTYLDR and MODFLOW models for simulating the detailed hydrologic budget for the Wet Walnut Creek Watershed. The computer simulation model was calibrated and verified using historical streamflow records (at Albert and Nekoma gaging stations), reported irrigation water use, observed water-level elevations in watershed structure pools, and groundwater levels in the alluvial aquifer system. To assess the impact of watershed structures and irrigation water use on streamflow and groundwater levels, a number of hypothetical management scenarios were simulated under various operational criteria for watershed structures and different annual limits on water use for irrigation. A standard "base case" was defined to allow comparative analysis of the results of different scenarios. The simulated streamflows showed that watershed structures decrease both streamflows and groundwater levels in the watershed. The amount of water used for irrigation has a substantial effect on the total simulated streamflow and groundwater levels, indicating that irrigation is a major budget item for managing water resources in the watershed. (C) 2000 Elsevier Science B.V. All rights reserved. [References: 19]
机译:本文介绍了对堪萨斯中西部湿核桃溪流域地表水和地下水系统(包括流-水层相互作用)进行综合建模研究的结果。这项研究的主要目的是评估流域结构和灌溉用水对溪流和地下水位的影响,进而影响夏安河底野生动物保护区的可用水量。将地表水流模型POTYLDR和地下水流模型MODFLOW组合为一个集成的,分水岭规模的连续模拟模型。对POTYLDR和MODFLOW模型进行了重大修订和增强,以模拟湿核桃溪流域的详细水文预算。使用历史流量记录(在Albert和Nekoma测量站处),报告的灌溉用水,流域结构池中观测到的水位升高以及冲积含水层系统中的地下水位,对计算机模拟模型进行了校准和验证。为了评估流域结构和灌溉用水对水流和地下水位的影响,在流域结构的各种运行标准和灌溉用水的不同年度限制下,模拟了许多假设的管理方案。定义了一个标准的“基本案例”,以允许对不同方案的结果进行比较分析。模拟的水流表明,流域结构减少了流域中的水流和地下水位。用于灌溉的水量对模拟的总流量和地下水位有很大影响,表明灌溉是管理流域水资源的主要预算项目。 (C)2000 Elsevier Science B.V.保留所有权利。 [参考:19]

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