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首页> 外文期刊>Hydrology and Earth System Sciences >A general analytical model for head response to oscillatory pumping in unconfined aquifers: effects of delayed gravity drainage and initial condition
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A general analytical model for head response to oscillatory pumping in unconfined aquifers: effects of delayed gravity drainage and initial condition

机译:密闭含水层中头部对振荡抽水的响应的一般分析模型:重力引流延迟和初始条件的影响

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摘要

Oscillatory pumping tests?(OPTs) provide an alternative to constant-head and constant-rate pumping tests for determining aquifer hydraulic parameters when OPT data are analyzed based on an associated analytical model coupled with an optimization approach. There are a large number of analytical models presented for the analysis of the OPT. The combined effects of delayed gravity drainage?(DGD) and the initial condition regarding the hydraulic head are commonly neglected in the existing models. This study aims to develop a new model for describing the hydraulic head fluctuation induced by the OPT in an unconfined aquifer. The model contains a groundwater flow equation with the initial condition of a static water table, Neumann boundary condition specified at the rim of a partially screened well, and a free surface equation describing water table motion with the DGD effect. The solution is derived using the Laplace, finite-integral, and Weber transforms. Sensitivity analysis is carried out for exploring head response to the change in each hydraulic parameter. Results suggest that the DGD reduces to instantaneous gravity drainage in predicting transient head fluctuation when the dimensionless parameter a 1 = ? S y b / K z exceeds?500 with empirical constant ? , specific yield Ssuby/sub , aquifer thickness b , and vertical hydraulic conductivity Ksubz/sub . The water table can be regarded as a no-flow boundary when a 1 P4/sup s, with P being the period of the oscillatory pumping rate. A pseudo-steady-state model without the initial condition causes a time-shift from the actual transient model in predicting simple harmonic motion of head fluctuation during a late pumping period. In addition, the present solution agrees well with head fluctuation data observed at the Savannah River site. Highlights . An analytical model of the hydraulic head due to oscillatory pumping in unconfined aquifers is presented. Head fluctuations affected by instantaneous and delayed gravity drainages are discussed. The effect of the initial condition on the phase of head fluctuation is analyzed. The present solution agrees well with head fluctuation data taken from field oscillatory pumping.
机译:当基于相关分析模型和优化方法对OPT数据进行分析时,震荡抽水测试(OPT)提供了恒定压头和恒速抽水测试的替代方法,用于确定含水层的水力参数。提出了大量用于OPT分析的分析模型。在现有模型中,通常忽略了延迟重力排水(DGD)和有关液压头的初始条件的综合作用。这项研究旨在开发一种新模型,用于描述无限制含水层中由OPT引起的水头扬程波动。该模型包含具有静态地下水位初始条件的地下水流方程,在部分筛选井的边缘处指定的Neumann边界条件以及描述具有DGD效应的地下水位运动的自由表面方程。该解决方案使用Laplace,有限积分和Weber变换得出。进行了灵敏度分析,以探索水头对每个液压参数变化的响应。结果表明,当无因次参数a 1 =?时,DGD在预测瞬时水头波动时可减少瞬时重力排水。 S y b / K z随经验常数超过?500。 ,比产率S y ,含水层厚度b和垂直导水率K z 。当水位为1 P4 s时,地下水位可被视为无水边界,其中P为振荡抽水率的周期。没有初始条件的伪稳态模型会导致在预测泵送后期的扬程波动的简单谐波运动时与实际瞬态模型发生时移。另外,本解决方案与在萨凡纳河站点观测到的水头波动数据非常吻合。强调 。提出了由于无限制含水层中的振荡抽水而引起的液压头的解析模型。讨论了受瞬时和延迟重力排水影响的水头波动。分析了初始条件对磁头波动相位的影响。本解决方案与从场振荡泵浦获得的压头波动数据非常吻合。

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