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On the interpretation of multi-well aquifer-pumping tests in confined porous aquifers using the Cooper and Jacob (1946) method

机译:关于使用Cooper和Jacob(1946)方法在狭窄多孔含水层中多孔含水层泵送试验的解释

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The Cooper and Jacob (Trans Am Geophys Union 27:526-534. https://doi.org/10.1029/TR027i004p00526; Cooper, Jacob, Trans Am Geophys Union 27:526534, 1946) method is widely used to interpret data from both single- and multi-well aquifer-pumping tests in a porous homogenous and isotropic confined aquifer system. The method can be used to interpret both pumping and observation well drawdown. For observation wells (piezometers), the method said to be valid when u<0.01 when drawdown observations are made in the near vicinity of the pumping well after a sufficiently long time of pumping. Despite the wide use of the method, the effects of using the Cooper and Jacob method to interpret multi-well aquifer-pumping test data are hardly discussed. The study illustrates and discusses the effect of using the Cooper and Jacob method to interpret multi-well aquifer-pumping tests. This is achieved with the help of simulations in 3 homogeneous one-layered confined and isotropic aquifer models using MODFLOW. Simulated drawdown is interpreted using the Cooper-Jacob method. The study shows that the transmissivity estimated from observation well data exponentially increases with the observation distance irrespective of the value of u. Only interpretation of pumping-well data with the Cooper and Jacob method correctly estimated the prescribed model transmissivity. Storativity estimates from observation data appears to decrease with increase in the observation distance as controlled by the Copper and Jacob equation but remained in the same order of magnitude as the prescribed model storativity. The study contributes towards a better practical understanding of the effects of using of using the Cooper and Jacob method to interpret multi-well aquifer-pumping test data for groundwater practitioners.
机译:Cooper和Jacob(Trans Am Geophys Union 27:526-534。HTTPS://Do.org/10.1029/TR027I004P00526; Cooper,Jacob,Trans Am Geophys Union 27:526534,1946)方法广泛用于解释来自两者的数据多孔均匀和各向同性局限性含水层系统中的单孔和多孔含水层泵送试验。该方法可用于解释泵送和观察井的绘图。对于观察孔(压力计),该方法据说当在足够长的泵送后泵送井附近的泵送井附近时,该方法是有效的。尽管采用了这种方法,但几乎不讨论使用Cooper和Jacob方法来解释多井含水层泵送测试数据的影响。该研究说明并讨论了使用Cooper和Jacob方法来解释多井含水层抽水测试的影响。使用Modflow在3个均匀的单层狭窄和各向同性含水层模型中的仿真帮助实现这一点。使用Cooper-Jacob方法解释模拟绘制。该研究表明,从观察井数据估计的透射率与观察距离指数地增加,而不管你的值如何。仅使用Cooper和Jacob方法对泵送井数据的解释正确地估计规定的模型透射率。来自观察数据的储存性估计似乎随着铜和雅各布方程控制的观察距离的增加而降低,但仍然与规定的模型储存性相同的数量级。该研究有助于更好地了解使用Cooper和Jacob方法使用使用Cooper和Jacob方法来解释地下水从业者的多井含水层泵送测试数据的影响。

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