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Effects of Spatial Scale on Distributed Flood Simulation Based on HEC-HMS Model: A Case of Jinjiang Watershed, Fujian, China

机译:空间规模对基于HEC-HMS模型分布式洪水仿真的影响 - 以富士锦江流域,福建,中国

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Taking Jinjiang watershed of Fujian province in China as study area, this work examines the effects of DEM resolutions, ranging from 30m to 600m, on Nash efficiencies of rainstorm flood simulation based on HEC-HMS model. Another focus is the influence of sub-basin division on flood simulation results. The study indicates that, with the decreasing of DEM resolution, basin slope, among other parameters such as basin evaluation and river length, etc., is most sensitive to the change of DEM resolution. In general, the Nash efficiency would drop down if DEM resolution decreases while other parameters held constant. DEM resolution at 150m appears to play a role of critical and optimal scale. Being based on 30m DEM resolution, it is found that the change of divided sub-basin number only slightly affects the results of flood simulation.
机译:在中国福建省锦江流域作为学习区,这项工作探讨了DEM决议,范围从30米到600米的影响,基于HEC-HMS模型的暴雨洪水仿真的纳什效率。另一个重点是子盆地师对洪水仿真结果的影响。该研究表明,随着DEM分辨率的降低,盆地坡与盆地评估和河流长度等其他参数等对DEM分辨率的变化最敏感。通常,如果DEM分辨率在其他参数保持恒定的情况下降低,则纳什效率会下降。在150米处的DEM分辨率似乎发挥着批判性和最佳规模的作用。基于30M的DEM分辨率,发现划分的子盆地数量的变化仅略微影响了洪水仿真的结果。

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