Prediction of soil detachment rate by overland flow using root length characteristic: Nonlinear model development

IF 4.3 3区 材料科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC
Misagh Parhizkar
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引用次数: 0

Abstract

Root length, as one of the most common characteristics of root, has an important role in controlling concentrated flow erosion. This study has explored the overall trends in reducing soil detachment rate as a function of the root length, based on the Hill curve model. In order to study the mechanical effects of root length on concentrated flow erosion rates, hydromulch was sprayed on soil surface and soil detachment rate was measured using a hydraulic flume. We found a nonlinear model for soil detachment rate as a function of root length (R2 = 0.81). Moreover, soil detachment rate was estimated well by the nonlinear models for ranges of flow shear stress (from 5.28 to 15.90 Pa) (p < 0.01) with R2 > 0.75. These results can be used to predict the soil erosion resistance to overland flow using root length characteristic.

利用根长特征预测陆地流对土壤的剥离率:非线性模型开发
根系长度作为根系最常见的特征之一,在控制集中流侵蚀方面具有重要作用。本研究基于希尔曲线模型,探讨了土壤剥离率随根系长度变化的总体趋势。为了研究根系长度对集中流侵蚀率的力学影响,我们在土壤表面喷洒了水力碎石,并使用水力槽测量了土壤剥离率。我们发现了土壤剥离率与根系长度函数的非线性模型(R2 = 0.81)。此外,非线性模型对水流剪应力范围(从 5.28 Pa 到 15.90 Pa)的土壤剥离率估算良好(p < 0.01),R2 > 0.75。这些结果可用于利用根长特征预测土壤对陆流的侵蚀阻力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
7.20
自引率
4.30%
发文量
567
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