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Assessing the impact of travel time formulations on the performance of spatially distributed travel time methods applied to hillslopes

机译:评估旅行时间公式对应用于山坡的空间分布旅行时间方法的性能的影响

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Rainfall-runoff models are valuable tools to simulate the hydrologic response of a watershed. In recent years, Spatially Distributed Travel Time (SDTT) methods have been developed as an alternative to semi-distributed and distributed models. In these methods, the travel times of grid-cells are summed along flow paths and then convoluted to generate the hydrograph at the outlet. Some aspects of these models remain poorly understood, including the implications of different travel time formulations, the extent to which SDTT models take into account the interaction among cells, the effects of grid-cell resolution, and the validity of the kinematic wave (KW) assumptions in this context. In this study, we use an analytical approach as well as a SDTT model to investigate the significance of considering upstream contributions when calculating the travel times of cells and its influence on the computed time of concentration and overall hydrograph shape. We also analyze the effect of terrain resolution on the performance of SDTT models. Lastly, we study the validity of the KW assumptions when SDTT models are applied to a plane. Results show that considering upstream contributions when computing travel times yields much better results, increasing the modified coefficient of efficiency of the simulated hydrographs from 0.24 to 0.81 on the best case scenario. When using a travel time expression that neglects upstream contributions, finer grid cell sizes reduce the accuracy of the time of concentration and the simulated hydrograph, decreasing efficiency from 0.5 to -0.02 in the worst case scenario. Finally, the KW approximation applies to the plane irrespective of the grid-cell resolution when upstream contributions are considered in the SDTT model for a wide range of slopes and roughness coefficients. (C) 2014 Elsevier B.V. All rights reserved.
机译:降雨径流模型是模拟流域水文响应的有价值的工具。近年来,已经开发了空间分布式旅行时间(SDTT)方法,以替代半分布式和分布式模型。在这些方法中,网格单元的行进时间沿着流动路径相加,然后被卷积以在出口生成水位图。这些模型的某些方面仍然知之甚少,包括不同旅行时间公式的含义,SDTT模型在多大程度上考虑了单元间的相互作用,网格单元分辨率的影响以及运动波(KW)的有效性。在这种情况下的假设。在这项研究中,我们使用一种分析方法以及SDTT模型来研究在计算细胞的传播时间时考虑上游贡献的重要性及其对浓度和总体水文形状计算时间的影响。我们还分析了地形分辨率对SDTT模型性能的影响。最后,我们研究了将SDTT模型应用于飞机时KW假设的有效性。结果表明,在计算旅行时间时考虑上游贡献会产生更好的结果,在最佳情况下,将模拟水位计的修正效率系数从0.24提高到0.81。当使用忽略上游影响的旅行时间表达式时,较细的网格像元大小会降低集中时间和模拟水文时间的准确性,在最坏的情况下,效率从0.5降低到-0.02。最后,当在较大范围的坡度和粗糙度系数的SDTT模型中考虑上游贡献时,KW近似值适用于平面,而与网格单元分辨率无关。 (C)2014 Elsevier B.V.保留所有权利。

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