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A New Solution for Confined-Unconfined Flow Toward a Fully Penetrating Well in a Confined Aquifer

机译:在承压含水层中向全渗透井承压的无限制流动的新解决方案

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摘要

Transient confined-unconfined flow conversion caused by pumping in a confined aquifer (i.e., piezometric head drops below the top confined layer) is complicated, partly due to different hydraulic properties between confined and unconfined regions. For understanding mechanism of the transient confined-unconfined conversion, this paper develops a new analytical solution for the transient confined-unconfined flow toward a fully penetrating well in a confined aquifer. The analytical solution is used to investigate the impacts on drawdown simulation by differences of hydraulic properties, including transmissivity, storativity, and diffusivity defined as a ratio of transmissivity and storativity, between the confined and unconfined regions. It is found that neglecting the transmissivity difference may give an overestimation of drawdown. Instead, neglecting the diffusivity difference may lead to an underestimation of drawdown. The shape of drawdown-time curve is sensitive to the change of storativity ratio, S/S-y, between the confined and unconfined regions. With a series of drawdown data from pumping tests, the analytical solution can also be used to inversely estimate following parameters related to the transient confined-unconfined conversion: radial distance of conversion interface, diffusivity, and specific yield of the unconfined region. It is concluded that using constant transmissivity and diffusivity in theory can result in biased estimates of radial distance of the conversion interface and specific yield of the unconfined region in practice. The analytical solution is useful to gain insight about various factors related to the transient confined-unconfined conversion and can be used for the design of mine drainage and groundwater management in the mining area.
机译:由密闭含水层中的泵送引起的瞬态密闭-无限流转换(即,压水头下降到顶部密闭层之下)很复杂,部分原因是密闭区域和密闭区域之间的水力特性不同。为了理解瞬态约束-无限制转换的机理,本文为瞬态约束-无限制流向承压含水层中的全渗透井提供了一种新的解析解。解析解决方案用于研究水力学特性(包括透射率,储能率和扩散率)的差异对压降模拟的影响,该流体性质被定义为受限区域与非受限区域之间的透射率与储能率之比。已经发现,忽略透射率差可能会过高地估算出压降。取而代之的是,忽略扩散率差异可能会导致对压降的低估。降落时间曲线的形状对密闭区域和非密闭区域之间的储氢比S / S-y的变化很敏感。利用抽水试验中的一系列压降数据,该分析解决方案还可用于反估计与瞬态限制-无限制转换相关的以下参数:转换界面的径向距离,扩散率和无限制区域的比产率。得出的结论是,在理论上使用恒定的透射率和扩散率会导致转换界面的径向距离的偏向估计和实践中无边界区域的比产量的偏差。该分析解决方案有助于深入了解与瞬态限制-无限制转换相关的各种因素,并可用于矿区的矿井排水和地下水管理设计。

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  • 来源
    《Ground water》 |2018年第6期|959-968|共10页
  • 作者

    Xiao Liang; Ye Ming; Xu Yongxin;

  • 作者单位

    Guangxi Univ, Coll Civil Engn & Architecture, Nanning 530004, Guangxi, Peoples R China;

    Florida State Univ, Dept Sci Comp, Tallahassee, FL 32306 USA;

    Hebei Univ Engn, Inst Africa Water Resources & Environm, Handan 056038, Hebei, Peoples R China;

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  • 正文语种 eng
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