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Particle Filters to Estimate Properties of Confined Aquifers

机译:粒子过滤器估算承压含水层的性质

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Involving a limited resource, the assessment of groundwater aquifers is of utmost importance. A key component of any such assessment is the determination of key properties that permit water resource managers to estimate aquifer drawdown and safe yield. This paper presents a particle filtering approach to estimate aquifer properties from transient data sets, leveraging recently published analytically-derived models for confined aquifers and using sample-based approximations of underlying probability distributions. The approach is examined experimentally through validation against three common aquifer testing problems: determination of (i) transmissivity and storage coefficient from non-leaky confined aquifer performance tests, (ii) transmissivity, storage coefficient, and vertical hydraulic conductivity from leaky confined aquifer performance tests, and (iii) transmissivity and storage coefficient from non-leaky confined aquifer performance tests with noisy data and boundary effects. On the first two well-addressed problems, the results using the particle filter approach compare favorably to those obtained by other published methods. The results to the third problem, which the particle filter approach can tackle more naturally than the previously-published methods, underscore the flexibility of particle filtering and, in turn, the promise such methods offer for a myriad of other geoscience problems.
机译:涉及有限的资源,对地下水含水层的评估至关重要。任何此类评估的关键组成部分是确定关键属性,使水资源管理者能够估算含水层的下降量和安全产量。本文提出了一种粒子滤波方法,可以利用瞬态数据集估算含水层的特性,利用最近发布的受限含水层的分析推导模型,并使用基于样本的基本概率分布近似值。通过针对三个常见的含水层测试问题的验证,通过实验对方法进行了实验检验:(i)通过非泄漏承压含水层性能测试确定透光率和储水系数,(ii)通过泄漏承压含水层性能测试确定透光率,储水系数和垂直水力传导率(iii)非泄漏密闭含水层性能测试的传输率和储能系数,并带有嘈杂的数据和边界效应。在前两个问题得到很好解决的情况下,使用粒子滤波方法的结果与通过其他已公开方法获得的结果相比具有优势。第三个问题的结果是粒子过滤方法比以前发布的方法可以更自然地解决,这凸显了粒子过滤的灵活性,并且反过来,这种方法也有望解决许多其他地球科学问题。

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