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首页> 外文期刊>Mathematical geosciences >Forward Coupled Modeling and Assessment of Gravity Anomalies Caused by Pumping Tests in Unconfined Aquifers Under Unsteady-State Conditions
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Forward Coupled Modeling and Assessment of Gravity Anomalies Caused by Pumping Tests in Unconfined Aquifers Under Unsteady-State Conditions

机译:在不稳定状态条件下,在非融合含水层中泵送试验引起的重力异常的前进耦合建模和评估

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摘要

Analysis of drawdown data from pumping tests is the most common method for identification of aquifer properties and estimation of hydraulic parameters in hydrogeology. Limited hard hydraulic data from wells, expensive and intrusive, can be supplemented with geophysical spatially distributed information. Gravity, sensible to mass variations, can provide information about hydraulic parameters and storage coefficients of aquifers. A satisfactory use of gravity requires the computation of temporal evolution of gravity anomalies related with the dynamic hydraulic process. For simplified and ideal problems, the calculation can be accomplished with analytical solutions. However, the limitations of analytical solutions in capturing some relevant characteristics, like heterogeneities, that require the use of numerical models, are well known. This article shows how the time-dependent gravity anomaly caused by a pumping test can be calculated in a unique code, in a coupled manner and in a single run. The methodology avoids the use and transference of data between various codes and can be utilized in a coupled hydrogeophysical inversion procedure. Additionally, it is flexible enough to include a wide range of characteristics that can be encountered in any pumping test, and is an adequate framework for field survey planning via analysis and study of time-dependent gravity curves.
机译:泵浦试验的绘制数据分析是鉴定含水层性质和水力地理液压参数估计的最常见方法。来自井,昂贵和侵扰的有限的硬液压数据可以补充地球物理空间分布的信息。对质量变化的重力,明智,可以提供有关液压参数和含水层储存系数的信息。令人满意的重力需要计算与动态液压过程相关的重力异常的时间演变。为了简化和理想的问题,可以通过分析解决方案来完成计算。然而,分析解决方案在捕获一些需要使用数值模型的相关特征的局限性,如异质性,是众所周知的。本文展示了泵送测试引起的时间依赖性重力异常如何以耦合的方式和单个运行以唯一的代码计算。该方法避免了各种代码之间的数据的使用和转移,并且可以用于耦合的水力学倒置过程。另外,它足够灵活,包括在任何泵浦测试中可以遇到的广泛的特性,并且是通过分析和研究时间依赖性重力曲线的现场调查规划的适当框架。

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