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Modeling Diffusivity Tests in Heterogeneous Aquifers: A Stochastic First-Order Approach

机译:异构含水层的漫射试验建模:随机第一阶方法

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摘要

The diffusivity test considered here consists of injecting (or pumping) a volume of water through short segments of a well for a short time and measuring the travel time of the peak of the head signal at different points in the surrounding aquifer volume. The specific storage is assumed to be constant, while the hydraulic conductivity of the heterogeneous aquifer is modeled as a random lognormal field. The axi-symmetric anisotropic structure is characterized by a few parameters (logconductivity mean and variance and horizontal and vertical integral scales). The paper determines the mean and variance of the peak travel time as function of distance from an instantaneous source by solving the flow equation using a first-order approximation in the logconductivity variance. The mean travel time is recast in terms of the equivalent conductivity, which decreases from the harmonic mean near the source to the effective conductivity in uniform flow for a sufficiently large distance. Similarly, the variance drops from its maximum near the source to a small value. Application to field test is discussed and topics of future investigations are suggested.
机译:这里考虑的扩散性试验包括通过井的短段注入(或泵送)水的一部分短时间并测量头部信号在周围含水层的不同点处的头部信号的峰值的行进时间。假设特定存储是恒定的,而异质含水层的水力导电性被建模为随机对数正态场。轴对称各向异性结构的特征在于少数参数(LogCONCERIVE均值和方差和水平和垂直积分尺度)。纸张通过使用在Logcrondioniving方差中的一阶近似求解流动方程来确定峰行程时间的峰值行程时间的平均值和方差。在等效电导率方面,平均行程时间是重量的,其从源极近的谐波均值降低到均匀流动的有效电导率,以获得足够大的距离。同样,方差从其靠近源附近的最大值降低了一个小值。讨论了现场测试的应用,并建议了未来调查的主题。

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