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Simultaneous use of hydrogeological and geophysical data for groundwater protection zone delineation by co-conditional stochastic simulations

机译:通过共条件随机模拟同时利用水文地质和地球物理数据来描述地下水保护区

摘要

Delineation of protection zones is performed by the use of stochastic simulations integrating all available data. In practice, due to the few available measurements of the main parameters, it can be very useful to integrate other data to reduce the uncertainty of the results. Most of the solute spreading is governed by the hydraulic conductivity (K) spatial variability at different scales. A stochastic approach adding measured piezometric heads and electrical resistivity data is presented. Results are discussed on a synthetic and on a practical case. Delineating the ‘Capture zone Probability Distribution’ (CaPD) for a given time, it is shown how the uncertainty can be reduced. The methodology can be used in real applications when little or no information is available about the hydraulic properties, through the conditioning on other data sets.
机译:通过使用集成所有可用数据的随机模拟来执行保护区的划分。实际上,由于主要参数的可用测量很少,因此整合其他数据以减少结果的不确定性可能非常有用。大部分溶质扩散是由不同尺度上的水力传导率(K)空间变异性决定的。提出了一种随机方法,增加了测压头和电阻率数据。在综合和实际案例中讨论了结果。描绘给定时间的“捕获区域概率分布”(CaPD),显示了如何减少不确定性。通过基于其他数据集的条件调整,当关于水力特性的信息很少或没有可用信息时,该方法可以用于实际应用中。

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