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首页> 外文期刊>Journal of the American Water Resources Association >OBSERVATION WELL NETWORK DESIGN FOR PUMPING TESTS IN UNCONFINED AQUIFERS
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OBSERVATION WELL NETWORK DESIGN FOR PUMPING TESTS IN UNCONFINED AQUIFERS

机译:非受限含水层中抽水试验的观测井网络设计

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This paper presents a method for determining locations of observation wells to be used in conducting pumping tests in unconfined aquifers. Sensitivity coefficients, the distribution of relative errors, and the correlation coefficients between four aquifer parameters (horizontal and vertical hydraulic conductivities K_r and K_z, storage coefficient S, and specific yield S_y) are used as the criteria for the design of observation well networks and the interpretation of pumping tests. The contours of the relative errors over a vertical profile are very useful in selecting the "best" location of an observation well. Results from theoretical analyses suggest that a wide range of locations is suitable for the determination of K_r and that good locations for the determination of K_z and S may be poorly suited for the determination of S_y. Consideration must be given to the position and lengths of the pumping well screen in the selection of observation well locations. For a given location, the quality of test data can be improved by using high pumping rates and frequent sampling of drawdowns. We found that a minimum of two and preferably three observation locations are needed along a given transect. Results of the four parameters from a single well analysis may contain higher uncertainties. However, composite analyses of multiple observation wells can reduce the correlation between the four aquifer parameters, particularly between K_r and S_y, thus, improving the quality of parameter estimation. Results from two pumping tests conducted at sites located in Nebraska were examined with regard to the proposed methodology.
机译:本文提出了一种确定观察井位置的方法,该观察井将用于在无限制含水层中进行抽水试验。灵敏度系数,相对误差的分布以及四个含水层参数(水平和垂直水力传导率K_r和K_z,存储系数S和比产量S_y)之间的相关系数被用作设计观测井网络和观测井网的标准。抽水试验的解释。垂直剖面上相对误差的轮廓对于选择观测井的“最佳”位置非常有用。理论分析的结果表明,较大范围的位置都适合确定K_r,而确定K_z和S的良好位置可能不太适合确定S_y。在选择观察井位置时,必须考虑泵井滤网的位置和长度。对于给定的位置,可以通过使用高抽速和频繁抽取水样来提高测试数据的质量。我们发现沿着给定的样条线至少需要两个,最好是三个观测位置。单井分析的四个参数的结果可能包含更高的不确定性。但是,对多个观测井进行综合分析可以减少四个含水层参数之间的相关性,尤其是K_r和S_y之间的相关性,从而提高参数估计的质量。关于提议的方法,检查了在内布拉斯加州的站点进行的两次抽水测试的结果。

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