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Calculation of groundwater yield of multiple seepage wells in the Yellow River Valley

机译:黄河谷多次渗流井地下水产量计算

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This study investigates the problems of small areas of the River Valley in the middle reaches of Yellow River, thinness of Quaternary system and small water yield of conventional vertical wells. The Yellow River Valley at Mutouyu Village of Jia County in Shaanxi Province is selected as the research area in this paper, and method for exploitation of groundwater of multiple seepage wells in this area is proposed. By taking the exchange flow rate between aquifers and seepage wells as the coupling point, the coupled seepage-pipe flow model is established for the simultaneous computation of multiple seepage wells with irregular distribution of multiple radiate bores. By adopting the 3D groundwater flow finite difference method, the water yields are computed for different scenarios which include multiple seepage wells working simultaneously during the normal season and dry season, and the interference between adjacent wells is also studied. Based on this, it is recommended that the exploitation scheme where 3 seepage wells are adopted in the study area is appropriate, according to which the water yield in normal season is 43000m3/d, while that in dry season is 28600m3/d. The results show that seepage wells and other non-tube well collection structure are of great significance to water supply in this area.
机译:本研究调查了黄河中游的河流小区的问题,四季度系统薄度和常规垂直井的小水产量。陕西省嘉县县议县的黄河谷被选为本文研究领域,并提出了该地区多次渗流井地下水的开采方法。通过将含水层和渗漏井之间的交换流速作为耦合点,建立耦合的渗流管流模型,用于同时计算多个渗漏井,其具有多个辐射孔的不规则分布。通过采用3D地下水流动有限差分方法,针对不同场景计算水产量,该情况包括在正常季节和旱季同时工作的多个渗流井,并且还研究了相邻孔之间的干扰。基于这一点,建议在研究区采用3渗漏井的开发方案是合适的,根据该井中采用了正常季节的水产量为43000m 3 / d,同时干燥季节为28600m 3 / d。结果表明,渗流井和其他非管阱收集结构对该地区的供水具有重要意义。

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