Volume 3 Issue 3
Sep.  2010
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Yong Huang, Zhi-fang Zhou, Zhong-bo Yu. 2010: Analytical solution based on stream-aquifer interactions in partially penetrating streams. Water Science and Engineering, 3(3): 292-303. doi: 10.3882/j.issn.1674-2370.2010.03.005
Citation: Yong Huang, Zhi-fang Zhou, Zhong-bo Yu. 2010: Analytical solution based on stream-aquifer interactions in partially penetrating streams. Water Science and Engineering, 3(3): 292-303. doi: 10.3882/j.issn.1674-2370.2010.03.005

Analytical solution based on stream-aquifer interactions in partially penetrating streams

doi: 10.3882/j.issn.1674-2370.2010.03.005
Funds:  SRF for ROCS, SEM; Natural Science Foundation for Hohai University under Grant
  • Received Date: 2010-01-06
  • Rev Recd Date: 2010-07-09
  • An analytical solution of drawdown caused by pumping is developed in an aquifer hydraulically connected to a finite-width stream on the condition of two streams. The proposed analytical solution modified Hunt’s analytical solution and not only considers the effect of stream width on drawdown, but also takes the distribution of drawdown on the interaction of two streams into account. Advantages of the solution include its simple structure, consisting of the Theis well function, parameters of aquifer and streambed semipervious material. The calculated results show that the proposed analytical solution agrees well with the previous solution and the errors between the two solutions are equal to zero on the condition of a stream without considering the effect of stream width. Also, deviations between the two analytical solutions increase with the increase of stream width. Furthermore, four cases are studied to discuss the effect of two streams on drawdown. It assumes that some parameters are changeable, and other parameters are constant, such as stream width, the distance between stream and pumping well, stream recharge rate, and the leakance coefficient of streambed semipervious material, etc. The analytical solution may provide estimates for parameters of aquifer and streambed semipervious material using the Type Curve Method through the data of field test

     

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