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首页> 外文期刊>Journal of water resource and protection >Resolution of the Computational Diffusion Hydrodynamic Model into Partial Differential Equation Form
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Resolution of the Computational Diffusion Hydrodynamic Model into Partial Differential Equation Form

机译:将计算扩散流体力学模型分解为偏微分方程形式

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Computational modeling continues to evolve in applications of hydrology and hydraulics, and the field of Computational Hydrology and Hydraulics has grown into a significant technology in both engineering and computational mathematics. In this paper, the fundamental issue of assessment of computational error is addressed by determination of an "equivalent" mathematical statement, as a partial differential equation ("PDE") that describes the original mathematical PDE statement and computational solution of it. In other words, given that the computational model does not exactly solve the governing PDE and that the computational processes used to approximate the governing PDE further moves the computational outcome away from the exact solution, what "alternate" or "equivalent" PDE does the resulting computational model exactly solve? In this paper it is shown that development of such an equivalent PDE enables an assessment of computational error by direct comparison of the equivalent PDE to the original PDE targeted to being solved. As an example, the USGS Diffusion Hydrodynamic Model ("DHM") is examined as to development of an equivalent PDE that describes the DHM computational modeling outcome, which is then compared to the actual outcomes resulting from application of the DHM model.
机译:计算建模在水文学和水力学的应用中继续发展,并且计算水文学和水力学领域已发展成为工程和计算数学领域的一项重要技术。在本文中,通过确定“等价”数学语句解决了计算误差评估的基本问题,该数学语句是描述原始数学PDE语句的偏微分方程(“ PDE ”)及其计算解决方案。 。换句话说,假设计算模型不能完全求解控制PDE,并且用于近似控制PDE的计算过程会使计算结果进一步偏离精确解,那么“替代”或“等效”是什么呢? PDE生成的计算模型是否完全可以解决?在本文中表明,开发这种等效PDE可以通过直接比较等效PDE与要解决的原始PDE来评估计算误差。作为示例,检查USGS扩散流体动力学模型(“ DHM”)以描述描述DHM计算建模结果的等效PDE,然后将其与DHM模型的应用产生的实际结果进行比较。

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