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首页> 外文期刊>Soil Science Society of America Journal >Detachment of Undisturbed Soil by Shallow Flow
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Detachment of Undisturbed Soil by Shallow Flow

机译:浅水流对原状土壤的分离

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摘要

Quantification of soil detachment rates is necessary to establish a basic understanding of soil erosion processes and to develop fundamental-based erosion models. Many studies have been conducted on the detachment rates of disturbed soils, but very little has been done to quantify the rates of detachment for natural soil conditions. This study was conducted to evaluate the influence of flow discharge, slope gradient, flow velocity, shear stress, stream power, and unit stream power on detachment rates of natural, undisturbed, mixed mesic typical Udorthent soil. Flow rates ranged from 0.25 to 2.0 L s-1 and slope gradient ranged from 8.8 to 46.6%. This study was compared with a previous study that used disturbed soil prepared by static compression. The results indicated that the detachment rates of disturbed soil were 1 to 23 times greater than the ones of natural undisturbed soil. It was necessary to use natural undisturbed soil samples to simulate the detachment process and to evaluate the influence of hydraulic parameter on detachment rate. Along with flow rate increasing, detachment rate increased as a linear function. Detachment rate also increased with slope gradient, but the functional relationship between the two variables depended on flow rate. Stepwise regression analysis indicated that detachment rate could be well predicted by a power function of flow rate and slope gradient (R2 = 0.96). Mean flow velocity was closely correlated to detachment rate (r2 = 0.91). Flow detachment rate was better correlated to a power function of stream power (r2 = 0.95) than to functions of either shear stress or unit stream power.
机译:为了建立对土壤侵蚀过程的基本理解并建立基于基础的侵蚀模型,必须对土壤脱离速率进行量化。 已经对扰动土壤的脱离速率进行了许多研究,但是很少进行 来量化自然 土壤条件下的脱离速率。 。进行此项研究以评估流量,斜率,流速,剪切应力,流功率和单位流功率对自然脱附率的影响。 > 原状,混合的,中生的典型恶臭土壤。流量 的范围为0.25至2.0 L s -1 ,斜率梯度的范围为 8.8至46.6%。将该研究与先前的研究 进行了比较,该研究使用了静压法制备的扰动土壤。 结果表明,受扰动土壤 的脱离速率是天然的未扰动 土壤的脱离速率的1至23倍。必须使用天然原状土壤样品 来模拟分离过程,并评估水力参数对分离速率的影响。随着流速 的增加,脱离率呈线性函数增加。 剥离率也随坡度的增加而增加,但两者之间的 功能关系变量取决于 流速。逐步回归分析表明,通过流速 和坡度的幂函数可以很好地预测脱离率 (R 2 = 0.96)。平均流速与剥离速率密切相关(r 2 = 0.91)。流动分离率 与流功率的幂函数(r 2 = 0.95)的相关性比与剪切应力或单位流的函数的相关性更好 电源。

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