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MODELING OF ARTIFICIAL RECHARGE WELLS OF DIFFERENT SHAPES AND EFFECT ON RECHARGE EFFICIENCY

机译:不同形状的人工补给井建模及其对补给效率的影响

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(1) The combination of sand tank experiment and numerical experiment was effective to discover the flow feature of the artificial recharge well. When large scale field experiment might be difficult to conducted, this method was an effective ways to design the size of the recharge wells. (2) There was no a linear relationship between average recharge and well depth/diameter. The well depth had more effect on the recharge rate than the well diameter did. (3) According to the well depth, the recharge well could be divided into dry well, dry-wet well and wet well. The dynamics and steady shapes of the water mound were distinct, when recharge wells of different types were selected for injecting water. (4) The recharge rate of per unit well depth (RPUD) was used to determine the optimum recharge efficiency. The relationship between RPUD and well depth could be divided into four sections. The RPUD would reach the optimum value in the section Ⅲ.
机译:(1)砂罐实验与数值实验相结合,有效地发现了人工补给井的流动特征。当可能难以进行大规模野外实验时,这种方法是设计补给井大小的有效方法。 (2)平均补给量与井深/井径之间没有线性关系。井深比井径对补给率的影响更大。 (3)根据井深,补给井可分为干井,干湿井和湿井。动态和水砣的稳定形状是不同的,当被选择用于喷射水的不同类型的回灌井。 (4)使用每口井深度的补给率(RPUD)来确定最佳补给效率。 RPUD与井深之间的关系可以分为四个部分。 RPUD将在第三部分达到最佳值。

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