首页> 外文会议>International Soil Conservation Organization Conference vol.4; 20020526-31; Beijing(CN) >Analytic Determination of Soil Erodibility and Critical Shear Stress
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Analytic Determination of Soil Erodibility and Critical Shear Stress

机译:土壤可蚀性和临界剪切应力的解析测定

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An analytic method for determining the soil erodibility and critical shear stress τ_c of concentrated flow was advanced in the paper. Manipulating the functional relation of sediment concentration with rill length and the analytic method for detachment rate determination using the regressed functional relation with data from simulated erosion experiments, the relationship amongst maximum net detachment rate, soil erodibility and shear stress of the flowing water was derived from this function, and hence the soil erodibility and critical shear stress τ_c were determined. The results showed that soil erodibility is the same for the experimental soil of similar soil physical conditions under different slope gradients. Soil erodibility of silt-clay soil (Loess soil) is 0.3211 ± 0.0003 kg • N~(-1) • s~(-1) on average. Critical shear stress τ_c increases with the slope gradient, namely 3.191 N • m~(-2), 3.937 N • m~(-2), 4.127 N • m~(-2), 4.376 N • m~(-2), 4.624 N • m~(-2) under 5°, 10°, 15°, 20°, 25° respectively. The soil erodibility and critical shear stress τ_c thus computed were compared with those directly estimated on the basis of experimental data to verify the feasibility of this method. The paper advanced a quick and convenient yet feasible method to calculate the soil erodibility and critical shear stress τ_c.
机译:提出了一种确定土壤侵蚀性和集中流动临界切应力τ_c的解析方法。利用模拟侵蚀实验数据,运用沉积物浓度与河床长度的函数关系,并利用回归函数关系分析方法确定脱离速率的解析方法,得出了最大净脱离速率,土壤易蚀性和流动水切应力之间的关系。因此,确定了土壤的可蚀性和临界切应力τ_c。结果表明,在不同坡度下,相似土壤物理条件下的实验土壤的土壤侵蚀性相同。淤泥质粘土(黄土)的土壤易蚀性平均为0.3211±0.0003 kg•N〜(-1)•s〜(-1)。临界切应力τ_c随坡度的增加而增加,即3.191N•m〜(-2),3.937N•m〜(-2),4.127N•m〜(-2),4.376N•m〜(-2)分别在5°,10°,15°,20°,25°下为4.624 N•m〜(-2)。将由此计算的土壤易蚀性和临界剪应力τ_c与根据实验数据直接估算的土壤易蚀性和临界剪应力τ_c进行比较,以验证该方法的可行性。本文提出了一种快速便捷的可行方法来计算土壤的侵蚀性和临界切应力τ_c。

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