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COMPARING TWO NEW TRANSFORMATIONS FOR THE WATER CONTENT FORM OF RICHARDS' EQUATION

机译:对Richards等式的水分形式进行两种新转化

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This study will present two new transformations that are applied to the water content (θ) form of Richard's Equation: 1) a reference soil transformation and 2) a constant "relative gradient ratio" transformation. The reference soil transformation enables a model to simulate water flow in a given soil in terms of θ for a reference soil. The main advantage of this transformation is that it provides a continuous θ profile across soil layers. However, the choice of a reference soil could also provide some numerical advantages by, for example, minimising the effect of sharp wetting fronts. An analytical expression will be derived that approximates the effect a transformation has on the gradients within a system. This approximation is based on the notion of relative gradients and will assist in analysing, which reference soils are appropriate for the problem. In addition, the analytical approximation can be used to derive general transformations for partial differential equations (PDEs). For this study, we will derive a constant "relative gradient ratio" transformation that will decrease relative gradients within the system by a constant factor (ε). Using the Method of lines (MOL), numerical solutions will be generated for a test case from the literature for both transformed and non-transformed equations. By comparing these solutions, this paper will analyse whether the new transformations improve the efficiency and/or accuracy of the numerical solution for the test case problem.
机译:本研究将呈现出两种新的转化,该转化应用于Richard等式的水含量(θ)形式:1)参考土壤转化和2)恒定的“相对梯度比”转化。参考土壤转化使模型能够在参考土壤的θ方面模拟给定土壤中的水流。该转化的主要优点在于它在土层中提供连续θ谱。然而,参考土壤的选择还可以通过例如最小化尖锐润湿前沿的效果来提供一些数值优势。将导出分析表达式,其近似于变换对系统内梯度的效果。该近似基于相对梯度的概念,并有助于分析,参考土壤适合该问题。另外,分析近似可用于导出部分微分方程(PDE)的一般转换。对于这项研究,我们将导出常数“相对梯度比”转换,其将通过恒定因子(ε)降低系统内的相对梯度。使用线路(MOL)的方法,将对来自文献的测试案例产生数值解决方案,用于转换和非转化的方程。通过比较这些解决方案,本文将分析新的转化是否提高了测试案例问题的数值解决方案的效率和/或准确性。

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