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Models of nonlinear stream aquifer transients

机译:非线性流含水层瞬态模型

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The phenomenon of stream aquifer interaction was investigated via mathematical. modeling using the Boussinesq equation. The effect of highly fluctuating transient stream Level on the subsequent propagation of hydraulic transients in the adjacent aquifer was quantified using various solutions to the linearized and the nonlinear Boussinesq equation. The semigroup solution of the linearized equation, the spatial-partial decomposition solution of the nonlinear equation, the temporal-partial decomposition solution of the nonlinear equation, and a quasi nonlinear solution were investigated subject to a transient, large-amplitude, periodic boundary condition. The models were verified with a limited numerical solution to the nonlinear Boussinesq equation. The results indicated that the linearized model compared well with the temporal-partial solution and with a numerical solution, whereas the spatial-partial solution did not adequately reproduce the expected damping in the water table amplitude with distance. The linearized solution was sensitive to the chosen linearized transmissivity. The quasi nonlinear solution did not exhibit the natural attenuation of the head amplitude as distance increased, but could tend itself to practical applications of stream-aquifer interaction calculations subject to discrete-time irregular flood hydrographs. The temporal-partial nonlinear solution is simpler to derive than the linearized solution. (c) 2007 Elsevier B.V. All rights reserved.
机译:通过数学研究了流水层相互作用的现象。使用Boussinesq方程建模。使用线性和非线性Boussinesq方程的各种解决方案,可以确定瞬态水位高度波动对相邻含水层水力瞬变随后传播的影响。在瞬态,大振幅,周期性边界条件下,研究了线性化方程的半群解,非线性方程的空间局部分解解,非线性方程的时间局部分解解和拟非线性解。用非线性Boussinesq方程的有限数值解验证了模型。结果表明,线性化模型与时间局部解和数值解比较好,而空间局部解不能充分再现地下水位振幅随距离的预期阻尼。线性化解决方案对所选的线性化透射率敏感。准非线性解决方案不会随着距离的增加而表现出水头振幅的自然衰减,但可能会在离散时间不规则洪水水位图的作用下趋于流-水相互作用的实际应用。时态-局部非线性解比线性解更容易导出。 (c)2007 Elsevier B.V.保留所有权利。

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