非线性头部相关磁通叠加的应用。

Ground water Pub Date : 2008-03-01 Epub Date: 2008-01-09 DOI:10.1111/j.1745-6584.2007.00408.x
Timothy Durbin, David Delemos, Aparna Rajagopal-Durbin
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引用次数: 5

摘要

虽然叠加通常用于解决线性地下水问题,但它也可用于解决某些非线性问题。特别是,它可以用于解决非线性磁头相关的问题,其中问题可以方便地分为稳态和瞬态分量。叠加可以独立于稳态水头来模拟瞬态水头的变化。可通过叠加处理的问题包括:厚生植物排放、河流-含水层相互作用、泉水排放和排水排放。每一个都代表一个非线性的依赖于头部的通量,其中通量取决于陆地表面的高程或其他一些特征。叠加是通过参考当地稳态地下水位的高度和将稳态通量的负值施加于瞬态问题来应用的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Application of superposition with nonlinear head-dependent fluxes.

While superposition is commonly used to address linear ground water problems, it can also be used to address certain nonlinear problems. In particular, it can be used to address problems with nonlinear head-dependent fluxes, where the problem can be separated conveniently into steady-state and transient-state components. Superposition can be used to simulate the transient-state head changes independently from the steady-state heads. The problems addressable by superposition include phreatophyte discharges, stream-aquifer interactions, spring discharges, and drain discharges. Each of these represents a nonlinear head-dependent flux, where the flux depends on the elevation of the land surface or some other feature. Superposition is applied by referencing elevations to the local steady-state water table and by imposing the negative of the steady-state flux on the transient-state problem.

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