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An Analytical Solution of Groundwater Flow in a Confined Aquifer With a Single-Well Circulation System

机译:具有单孔循环系统的密闭含水层地下水流动的分析解决方法

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摘要

Abstract In this study, a general analytical model for the single‐well circulation system is developed to analyze transient drawdown in a confined aquifer. The analytical solution of transient drawdown in the Laplace domain, which is numerically inverted into the time domain using the Stehfest method, is derived by employing a combination of the Laplace and Fourier cosine transforms. The characteristics of transient drawdown and the effects of different parameters related to the single‐well circulation system on drawdown are investigated. Furthermore, the analytical solution under steady‐state conditions is obtained using the Fourier cosine transform. The results show that steady drawdown contours are symmetric around a horizontal midplane of an aquifer and vary tremendously with distance from the well axis. The contours of drawdown around the sealed section are dense, meaning that the hydraulic gradient in this area is relatively large. The sensitivity analysis, performed to evaluate the characteristics of drawdown to changes in each parameter, indicates that the radial hydraulic conductivity and the length of the sealed section have a large impact on the drawdown and that each parameter has its influence period on the drawdown.
机译:摘要在本研究中,开发了一种单井循环系统的一般分析模型,分析了一个受限含水层的瞬态缩减。通过采用拉普弗斯和傅里叶余弦变换的组合来导出LAPLACE域的瞬态缩小的瞬态缩小的分析解,这是通过使用拉普斯和傅里叶余弦变换的组合来源的。研究了瞬态拉出的特点及不同参数与单井循环系统的绘制系统的影响。此外,使用傅里叶余弦变换获得稳态条件下的分析溶液。结果表明,稳定的绘图轮廓围绕含水层的水平中间平面进行对称,并且距离井轴轴的距离差别。密封部分周围的缩小轮廓是密集的,这意味着该区域中的液压梯度相对较大。进行评估到每个参数变化的绘制特性的灵敏度分析表明,径向液压导电性和密封部分的长度对拉出的影响很大,并且每个参数在绘制时具有其影响时段。

著录项

  • 来源
    《Water resources research》 |2020年第7期|e2020WR027529.1-e2020WR027529.14|共14页
  • 作者单位

    China University of Mining and Technology|National Engineering Research Center of Coal Mine Water Hazard Controlling|University of California;

    China University of Mining and Technology|National Engineering Research Center of Coal Mine Water Hazard Controlling;

    University of California;

    Helmholtz Centre for Environmental Research (UFZ)|Dresden University of Technology;

    China University of Mining and Technology|National Engineering Research Center of Coal Mine Water Hazard Controlling;

    China University of Mining and Technology|National Engineering Research Center of Coal Mine Water Hazard Controlling;

    China University of Mining and Technology|National Engineering Research Center of Coal Mine Water Hazard Controlling;

    Central Plains Institute of Intelligent Geology;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    analytical solution; partially penetrating well; Laplace transform; single‐well circulation system; shallow geothermal energy;

    机译:分析解决方案;部分穿透良好;拉普拉斯变换;单孔循环系统;浅层地热能量;
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