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首页> 外文期刊>Journal of Hydrology >An investigation of the effects of spatial heterogeneity of initial soil moisture content on surface runoff simulation at a small watershed scale
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An investigation of the effects of spatial heterogeneity of initial soil moisture content on surface runoff simulation at a small watershed scale

机译:小流域尺度上初始土壤水分空间异质性对地表径流模拟的影响

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In addition to the soil saturated hydraulic conductivity, K-s, the initial soil moisture content, theta(i) is the quantity commonly incorporated in rainfall infiltration models for simulation of surface runoff hydrographs. Previous studies on the effect of the spatial heterogeneity of initial soil water content in the generation of surface runoff were generally not conclusive, and provided no guidance on designing networks for soil moisture measurements. In this study, the role of the spatial variability of theta(i) at the small watershed scale is examined through the use of a simulation model and measurements of theta(i). The model combines two existing components of infiltration and surface runoff to model the flow discharge at the watershed outlet. The observed values of soil moisture in three experimental plots are combined to determine seven different distributions of theta(i) each used to compute the hydrographs produced by four different rainfall patterns for two initial conditions classified as "dry" soil and "wet" soil. For rainfalls events typically associated with floods, the spatial variability of theta(i) at the watershed scale does not cause significant variations in surface runoff for initially dry or wet soils. Furthermore, when the main objective is to represent flood events a single ground point measurement of theta(i) in each area with the same land use may suffice to obtain adequate outflow hydrographs at the outlet. (C) 2016 Elsevier B.V. All rights reserved.
机译:除土壤饱和导水率K-s外,土壤初始含水量theta(i)是降雨渗透模型中通常用于模拟地表径流水位图的量。以前关于初始土壤水分空间异质性在地表径流产生中的影响的研究通常不是结论性的,也没有为设计土壤水分测量网络提供指导。在这项研究中,通过使用模拟模型和测量theta(i),研究了小流域尺度下theta(i)的空间变异性的作用。该模型结合了渗透和地表径流这两个现有的要素,以模拟流域出口处的流量排放。结合三个实验区中土壤湿度的观测值,确定theta(i)的七个不同分布,每个分布用于计算四种初始降雨类型(分为“干”土壤和“湿”土壤)的四种不同降雨模式产生的水位图。对于通常与洪水有关的降雨事件,在分水岭尺度上theta(i)的空间变异性不会引起最初干或湿土壤的地表径流明显变化。此外,当主要目标是表示洪水事件时,在具有相同土地利用的每个区域中对theta(i)进行单个地面测量就足以在出口处获得足够的流出水位图。 (C)2016 Elsevier B.V.保留所有权利。

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