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首页> 外文期刊>Journal of hydrologic engineering >Overland Flow Modeling with the Shallow Water Equations Using a Well-Balanced Numerical Scheme: Better Predictions or Just More Complexity
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Overland Flow Modeling with the Shallow Water Equations Using a Well-Balanced Numerical Scheme: Better Predictions or Just More Complexity

机译:使用平衡良好的数值方案用浅水方程式进行陆上水流建模:更好的预测或更复杂

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In the last decades, several physically based hydrological modeling approaches of various complexities have been developed that solve shallow water equations or their approximations using various numerical methods. Users of the model may not necessarily know the different hypotheses underlying these development and simplifications, and it might therefore be difficult to judge if a code is well adapted to their objectives and test case configurations. This paper aims to compare the predictive abilities of different models and evaluate potential gain by using an advanced numerical scheme for modeling runoff. Four different codes are presented, each based on either shallow water or kinematic wave equations, and using either the finite volume or finite difference method. These four numerical codes are compared with different test cases, allowing to emphasize their main strengths and weaknesses. Results show that, for relatively simple configurations, kinematic wave equations solved with the finite volume method represent an interesting option. Nevertheless, as it appears to be limited in case of discontinuous topography or strong spatial heterogeneities, for these cases they advise the use of shallow water equations solved with the finite volume method.
机译:在过去的几十年中,已经开发了多种复杂程度的基于物理的水文建模方法,这些方法可以使用各种数值方法来求解浅水方程或它们的近似值。模型的用户不一定知道这些开发和简化所基于的不同假设,因此可能难以判断代码是否很好地适合其目标和测试用例配置。本文旨在比较不同模型的预测能力,并通过使用高级数值模型来模拟径流来评估潜在收益。提出了四种不同的代码,每种代码都基于浅水或运动波方程,并使用了有限体积法或有限差分法。将这四个数字代码与不同的测试用例进行比较,从而可以强调它们的主要优点和缺点。结果表明,对于相对简单的配置,用有限体积法求解的运动波动方程是一个有趣的选择。然而,由于在地形不连续或空间异质性很强的情况下似乎受到限制,对于这些情况,他们建议使用有限体积法求解的浅水方程。

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