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首页> 外文期刊>Journal of Hydrology >Incorporating subsurface-flow mechanism into geomorphology-based IUH modeling
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Incorporating subsurface-flow mechanism into geomorphology-based IUH modeling

机译:将地下流动机制纳入基于地貌的IUH建模中

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Surface- and subsurface-runoff processes on hillslopes are quite different in nature; nevertheless, the geomorphological instantaneous unit hydrograph (GIUH) simulates runoff using only the surface-flow mechanism. In this study, the GIUH model was revised to consider both the surface- and subsurface-flow processes. Kinematic-wave approximation was used to estimate the mean value of the travel-time probability distributions for runoff in surface-flow regions and channels, and Darcy's law was adopted to estimate the runoff travel time in subsurface-flow regions. Based on the linear system assumption, the hydrologic response of a watershed is the superposition of the hydrologic responses resulting from the surface flow and subsurface flow of the watershed. The IUH can adequately reflect the variation of surface-flow roughness and hydraulic conductivity. An example watershed was selected to test the capability of the revised model. The simulated hydrographs obtained using the original and revised models were basically in good agreement with the observed hydrographs. However, significant improvement of the simulation was found in the recession limb of the simulated hydrograph because flood recession was dominated by the subsurface-flow process. (c) 2005 Elsevier B.V. All rights reserved.
机译:本质上,山坡的地表径流和地下径流过程完全不同。但是,地貌瞬时单位水位图(GIUH)仅使用地表流机制模拟了径流。在这项研究中,对GIUH模型进行了修订,以考虑地表和地下流动过程。运动波逼近法用于估计地表流区域和通道径流的传播时间概率分布的平均值,并采用达西定律来估计地下流区域的径流传播时间。基于线性系统假设,流域的水文响应是由流域的地表水和地下流产生的水文响应的叠加。 IUH可以充分反映出表面流粗糙度和水力传导率的变化。选择一个示例分水岭来测试修改后的模型的功能。使用原始模型和修订模型获得的模拟水文图与观察到的水文图基本吻合。但是,在模拟水文图的后退分支中发现了模拟的显着改进,因为洪水后退由地下流过程控制。 (c)2005 Elsevier B.V.保留所有权利。

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