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A Digital Procedure for Ground Water Recharge and Discharge Pattern Recognition and Rate Estimation

机译:地下水充排量模式识别和速率估算的数字过程

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摘要

A digital procedure to estimate recharge/discharge rates that requires relatively short preparation time and uses readily available data was applied to a setting in central Wisconsin. The method requires only measurements of the water table, fluxes such as stream baseflows, bottom of the system, and hydraulic conductivity to delineate approximate recharge/discharge zones and to estimate rates. The method uses interpolation of the water table surface, recharge/discharge mapping, pattern recognition, and a parameter estimation model. The surface interpolator used is based on the theory of radial basis functions with thin-plate splines. The recharge/discharge mapping is based on a mass-balance calculation performed using MODFLOW. The results of the recharge/discharge mapping are critically dependent on the accuracy of the water table interpolation and the accuracy and number of water table measurements. The recharge pattern recognition is performed with the help of a graphical user interface (GUI) program based on several algorithms used in image processing. Pattern recognition is needed to identify the recharge/discharge zonations and zone the results of the mapping method. The parameter estimation program UCODE calculates the parameter values that provide a best fit between simulated heads and flows and calibration head-and-flow targets. A model of the Buena Vista Ground Water Basin in the Central Sand Plains of Wisconsin is used to demonstrate the procedure.
机译:威斯康星州中部的环境采用了一种数字化的程序来估算充电/放电速率,该程序需要相对较短的准备时间并使用容易获得的数据。该方法仅需要测量地下水位,流量(例如流基流),系统底部和水力传导率,即可描绘出大致的补给/排放区域并估算出流量。该方法使用地下水位表面的插值,补给/排放映射,模式识别和参数估计模型。所使用的表面插值器基于带有薄板花键的径向基函数理论。充放电映射基于使用MODFLOW进行的质量平衡计算。补给/排出映射的结果主要取决于地下水位插值的精度以及地下水位测量的精度和数量。基于图像处理中使用的几种算法,借助图形用户界面(GUI)程序执行充电模式识别。需要模式识别来识别充电/放电分区并划分映射方法的结果。参数估计程序UCODE计算可在模拟扬程和流量以及标定扬程和流量目标之间提供最佳匹配的参数值。使用威斯康星州中部沙质平原的Buena Vista地下水盆地模型来演示该过程。

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