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Diffusion wave based modeling of flood inundation based on sub-grid connectivity

机译:基于分布洪水的扩散波基于子网格连接的洪水建模

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We now routinely model flood inundation using reduced complexity models. Traditionally, these have involved both depth-averaging and width-averaging of the mass and momentum equations. Strictly, this assumption is only valid when the flow is shallow and the topographic forcing term is dominant and it still leaves the problem of discretisation and solution, given the strong sensitivity to topographic resolution. In this paper, we present and validate an alternative sub-grid formulation that introduces an explicit representation of finer resolution topographic. This approach uses high-resolution topographic data to develop explicit parameterization of sub-grid-scale topographic variability to represent both the volume of a grid cell that can be occupied by the flow and the effect of that variability upon the timing and direction of the lateral fluxes. This approach is found to give significantly better prediction of fluvial flood inundation in urban areas than traditional calibration of sub-grid-scale effects using Manning's n.
机译:我们现在使用常规模型洪水淹没降低了复杂性模型。传统上,这些都涉及两个深度平均和质量和动量方程的宽度平均。严格地说,当流量浅,地形强迫项为主体,但它仍然会使离散和解决的问题,给予地形分辨率敏感性较强这种假设是唯一有效的。在本文中,我们本和验证的替代分格制剂介绍更精细的分辨率地形的明确表示。这种方法使用高分辨率的地形数据来开发分格比例尺地形变化的显式的参数化来表示的横向的两个可以由流占据一个栅格单元的体积和该可变性的经定时的影响和方向通量。这种方法被发现给河流洪水淹没显著更好的预测中使用曼宁n比的分电网规模效应传统校准市区。

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