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Three-dimensional groundwater flow to a lake: an explicit analytical solution

机译:流向湖泊的三维地下水:一种明确的分析解决方案

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摘要

Steady, Darcian groundwater flow near a hemispherical lake contacting a confined homogeneous aquifer of semi-infinite depth is studied analytically by the method of separation of variables. The lake bottom is modeled either as an equipotential (the Dirichlet boundary) or as a surface with a thin sediment skin (the Robin boundary). The lake disturbs an incident uniform flow such that three regimes (gaining, losing and flow-through) are possible depending on the ambient velocity, aquifer conductivity, lake diameter, the bottom head, sediment thickness and conductivity in case of silted beds. Explicit expressions for the specific discharge and stream function are derived. Inflow and outflow rates are calculated. Implications for other equipotential surfaces placed in ambient fields are discussed. (C) 2000 Elsevier Science B.V. All rights reserved. [References: 37]
机译:通过变量分离的方法,对半球形湖泊附近接触半无限深度的均质含水层的稳态达西式地下水流进行了分析研究。湖底被建模为等势(狄利克雷边界)或具有薄沉积物表皮的表面(罗宾边界)。湖泊扰乱了入射均匀流,因此在环境为淤泥的情况下,取决于环境速度,含水层电导率,湖泊直径,底部水头,沉积物厚度和电导率,可能会出现三种情况(获取,损失和流过)。导出了特定流量和流量函数的明确表达式。计算流入和流出速率。讨论了放置在环境场中的其他等势面的含义。 (C)2000 Elsevier Science B.V.保留所有权利。 [参考:37]

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