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首页> 外文期刊>Journal of irrigation and drainage engineering >Simulation of Radial Collector Well in Shallow Alluvial Riverbed Aquifer Using Analytic Element Method
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Simulation of Radial Collector Well in Shallow Alluvial Riverbed Aquifer Using Analytic Element Method

机译:浅层冲积河床含水层径向集热井的解析元模拟

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摘要

To withdraw large quantities of groundwater from the alluvial aquifers for various uses near riverbeds, radial collector (RC) wells are often preferable to the installation of several small diameter tube wells. In regions where rivers are not perennial or have low flow conditions during most part of the year, the RC wells are placed in the riverbed to obtain uninterrupted supply of naturally filtered groundwater through highly permeable saturated riverbed aquifers. Due to the complexities of flow, no exact analytical solution exists to provide steady state discharge drawdown relationship for RC well. Numerical model construction using finite difference or finite element method is quite cumbersome because of the radial orientation of laterals. To overcome these difficulties, in this study a steady state simulation model based on analytic element method (AEM) is developed to simulate the discharge-drawdown relation for RC well in an unconfined riverbed aquifer. In the model, line-sink elements are used to represent stream as well as radial laterals with specified conductance. The model is used to study the effects of different lateral configurations, hydraulic conductivity of riverbed aquifer, radius of influence and conductance of laterals on the well discharge, and consequent drawdown. Further based on the results of simulations using the AEM model, an approximate empirical equation is developed to obtain the discharge of RC well readily for design purpose. Further, the developed model has been applied to a field study and results are obtained for different plausible configurations of radial wells. The proposed methodology based on the application of AEM modeling tool, has been found to be efficient in constructing riverbed aquifer model with RC well. The proposed model is recommended in designing new collector well by providing minimum length of laterals for the sustained yield.
机译:为了从冲积含水层中抽取大量地下水用于河床附近的各种用途,相对于安装几个小直径管井,径向收集器(RC)井通常更可取。在一年中大部分时间河流不常年或流量低的地区,将RC井放置在河床中,以通过高渗透性饱和河床含水层获得不间断的自然过滤地下水供应。由于流动的复杂性,不存在用于为RC井提供稳态排放垂降关系的精确分析解决方案。由于支管的径向方向,使用有限差分或有限元方法建立的数值模型非常麻烦。为了克服这些困难,在本研究中,建立了一种基于分析元素方法(AEM)的稳态模拟模型,以模拟无限制河床含水层中RC井的排水量关系。在模型中,线下沉元素用于表示具有指定电导率的流以及径向分支。该模型用于研究不同的侧向构造,河床含水层的水力传导率,支流的影响半径和电导率对井排量的影响,以及随之而来的水位下降。进一步基于使用AEM模型的仿真结果,开发了一个近似经验方程式,可以很容易地获得RC流量,以用于设计目的。此外,已开发的模型已应用于野外研究,并获得了不同合理的radial井配置。已经发现,基于AEM建模工具的方法可以有效地利用RC井构建河床含水层模型。在设计新的集油井时,建议使用建议的模型,方法是提供最小的侧管长度以保持产量。

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