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首页> 外文期刊>The Science of the Total Environment >Identification of vulnerable regions to soil loss under the dynamic saturation process
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Identification of vulnerable regions to soil loss under the dynamic saturation process

机译:确定动态饱和过程下土壤流失的脆弱区域

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This study presents a theoretical framework based on power law distribution to identify the vulnerable regions to soil loss in Susu river basin at Cameron Highlands, Malaysia by using the geomorphologic factors from Digital Elevation-Model (DEM). Drainage area is used to describe the runoff aggregation structure of the watershed which represents the magnitude of discharge. Stream power is also used to describe the energy expenditure pattern of the watershed. They are fitted to power law distribution by means of the maximum likelihood to estimate the threshold for soil loss. The landscape stability condition is assessed through the mechanism of channel initiation. Two regions in the slope area plot are recognized as the regimes susceptible to soil loss, in that discharge, local slope and energy are sufficient for the initiation of soil movement. The result is further improved by incorporating the Topographic Wetness Index (TWI) aiming to locate vulnerable regions to soil loss under the dynamic saturation process. The final result indicates that the vulnerable regions expand from perennial reaches to ephemeral reaches as saturation process develops. It implies the transition of runoff generation from groundwater in perennial reaches to surface runoff in ephemeral reaches. Identification of soil loss vulnerable regions under the dynamic saturation process helps in planning of the mitigation measures for soil erosion. (c) 2018 Elsevier B.V. All rights reserved.
机译:这项研究提出了一个基于幂律分布的理论框架,利用数字高程模型(DEM)的地貌因素,确定了马来西亚金马仑高原苏苏河流域的土壤流失的脆弱区域。流域用于描述流域的径流汇聚结构,代表了流量的大小。流能也被用来描述流域的能量消耗模式。通过最大可能性估计土壤流失的阈值,将其拟合幂律分布。通过通道启动机制评估景观稳定性条件。坡度区域图中的两个区域被认为是易受土壤流失的影响,因为流量,局部坡度和能量足以引发土壤运动。通过合并地形湿度指数(TWI)来进一步改善结果,该指数旨在在动态饱和过程下确定易受土壤流失影响的脆弱区域。最终结果表明,随着饱和过程的发展,脆弱地区从多年生植物扩展到临时植物。这意味着多年生河段的径流产生从地下水过渡到短暂河段的地表径流。在动态饱和过程下确定水土流失脆弱区域有助于规划水土流失的缓解措施。 (c)2018 Elsevier B.V.保留所有权利。

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