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On the coupled unsaturatedsaturated flow process induced by vertical, horizontal, and slant wells in unconfined aquifers

机译:在无束缚含水层中垂直,水平和倾斜孔诱导的耦合不饱和饱和流程

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Conventional models of pumping tests in unconfined aquifers often neglect the unsaturated flow process. This study concerns the coupled unsaturatedsaturated flow process induced by vertical, horizontal, and slant wells positioned in an unconfined aquifer. A mathematical model is established with special consideration of the coupled unsaturatedsaturated flow process and the well orientation. Groundwater flow in the saturated zone is described by a three-dimensional governing equation and a linearized three-dimensional Richards' equation in the unsaturated zone. A solution in the Laplace domain is derived by the Laplacefinite-Fourier-transform and the method of separation of variables, and the semi-analytical solutions are obtained using a numerical inverse Laplace method. The solution is verified by a finite-element numerical model. It is found that the effects of the unsaturated zone on the drawdown of a pumping test exist at any angle of inclination of the pumping well, and this impact is more significant in the case of a horizontal well. The effects of the unsaturated zone on the drawdown are independent of the length of the horizontal well screen. The vertical well leads to the largest water volume drained from the unsaturated zone?(W) during the early pumping time, and the effects of the well orientation on W?values become insignificant at the later time. The screen length of the horizontal well does not affect?W for the whole pumping period. The proposed solutions are useful for the parameter identification of pumping tests with a general well orientation (vertical, horizontal, and slant) in unconfined aquifers affected from above by the unsaturated flow process.
机译:在无舒适的含水层中泵送测试的常规模型通常忽略不饱和流程。该研究涉及垂直,水平和倾斜孔诱导的耦合的不饱和饱和流程,其位于不包含在非整合的含水层中。建立了一种数学模型,特别考虑了耦合的不饱和流程和井取向。饱和区中的地下水流动由不饱和区中的三维控制方程和线性化的三维理查德的方程描述。拉普拉斯域中的解决方案是由LAPLACEFINITE-傅里叶变换和分离方法来源的,并且使用数值逆拉普拉斯方法获得半分析解决方案。通过有限元数值模型来验证该解决方案。结果发现,不饱和区对泵送井的任何倾斜角存在于泵送测试的缩小的影响,并且这种影响在水平井的情况下更为显着。不饱和区对缩进的影响与水平阱筛的长度无关。垂直孔导致从不饱和区排出的最大水量?(w)在早移时间期间,井取向对W的影响在稍后的时间内变得微不足道。水平井的屏幕长度不会影响整个泵送周期的w。所提出的解决方案可用于泵送试验的参数识别,其在不饱和流程中从上方影响的非整合含水层中的一般井取向(垂直,水平和倾斜)。

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