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首页> 外文期刊>Hydrology and Earth System Sciences Discussions >Effect of high-resolution spatial soil moisture variability on simulated runoff response using a distributed hydrologic model
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Effect of high-resolution spatial soil moisture variability on simulated runoff response using a distributed hydrologic model

机译:利用分布式水文模型对模拟径流响应的高分辨率空间水分差异的影响

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摘要

The importance of spatial variability of antecedent soil moisture conditions on runoff response is widely acknowledged in hillslope hydrology. Using a distributed hydrologic model, this paper aims at investigating the effects of soil moisture spatial variability on runoff in various field conditions and at finding the structure of the soil moisture pattern that approaches the measured soil moisture pattern in terms of field scale runoff. High spatial resolution soil moisture was surveyed in ten different field campaigns using a proximal ground penetrating radar (GPR) mounted on a mobile platform. Based on these soil moisture measurements, seven scenarios of spatial structures of antecedent soil moisture were used and linked with a field scale distributed hydrological model to simulate field scale runoff. Accounting for spatial variability of soil moisture resulted in general in higher predicted field scale runoff as compared to the case where soil moisture was kept constant. The ranges of possible hydrographs were delineated by extreme scenarios where soil moisture was directly and inversely modelled according to the topographic wetness index (TWI). These behaviours could be explained by the sizes and locations of runoff contributing areas, knowing that runoff was generated by infiltration excess over a certain soil moisture threshold. The most efficient scenario for modelling the within field spatial structure of soil moisture appeared to be when soil moisture is directly arranged according to the TWI, especially when measured soil moisture and TWI were correlated. The novelty of this work is to benefit from a large set of high-resolution soil moisture measurements allowing to model effectively the within field distribution of soil moisture and its impact on the field scale hydrograph. These observations contributed to the current knowledge of the impact of antecedent soil moisture spatial variability on field scale runoff.
机译:山坡水文中广泛承认,先前土壤水分湿度条件的空间变异性的重要性。本文采用了分布式水文模型,旨在研究土壤水分空间可变性对各种现场条件下径流的影响,并在田间径流方面寻找接近测量的土壤水分模式的土壤水分模式的结构。使用安装在移动平台上的近端地面穿透雷达(GPR)在十种不同的场运动中调查了高空间分辨率的土壤水分。基于这些土壤湿度测量,使用了七种前型土壤水分的空间结构的场景,并与田间分布水文模型连接,以模拟现场比例径流。与土壤湿度保持恒定的情况相比,土壤水分空间湿度的空间变异性占较高的预测场垢径流。可能的水力照片的范围是通过极端场景描绘的,其中土壤水分直接和根据地形湿度指数(TWI)进行倒置。这些行为可以通过径流贡献区域的尺寸和位置来解释,知道通过渗透过量产生径流,在某种土壤水分阈值上产生过量。用于建模在土壤水分的现场空间结构内最有效的情景似乎是当土壤水分根据TWI直接布置时,特别是当测量的土壤水分和TWI相关时。这项工作的新颖性是从一大集的高分辨率土壤水分测量中受益,允许有效地模拟土壤水分的现场分布及其对现场水平的影响。这些观察结果有助于目前了解前一种土壤水分空间可变性对现场规模径流的影响。

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