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水力发电学报 ›› 2017, Vol. 36 ›› Issue (10): 65-73.doi: 10.11660/slfdxb.20171007

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细沟侵蚀下的坡面水动力学特性研究

  

  • 出版日期:2017-10-25 发布日期:2017-10-25

Hydraulic characteristics of slope land under rill erosion

  • Online:2017-10-25 Published:2017-10-25

摘要: 研究细沟水流水动力学特性,是了解和掌握细沟侵蚀机理的关键,也是建立土壤侵蚀预报模型的基础。本文在室内放水冲刷试验基础上,对不同土壤容重(1.2、1.35、1.5 g/cm3)、流量(2、4、8、16 L/min)、坡度(5°、10°、15°、20°、25°)条件下的细沟水流水动力学特性进行了研究,结果表明:流量和坡度都是影响水流流速的重要因素,流速可以用坡度和流量的幂函数来表示,且坡度是影响流速的主要原因;土壤容重对流速有一定影响,且随坡度的变化对流速的影响存在差异;水流雷诺数变化范围在248 ~ 1932之间,土壤容重和坡度对雷诺数均没有影响,雷诺数主要与流量有关,且随流量的增大呈线性关系;细沟水流弗劳德数在各试验条件下基本大于1,属急流状态,土壤容重对弗劳德数的影响类似于流速,随坡度的不同有一定差异;水流阻力系数变化范围为0.04 ~ 0.955之间,随坡度和流量的增大呈先增大后减小的趋势,且受土壤容重影响明显,在低坡和陡坡下都随土壤容重增大而减小。

Abstract: Studies of rill flow hydraulic characteristics are essential to understand the mechanism of rill erosion and develop soil erosion prediction models. This paper presents an analysis on hydraulic characteristics of the rill flows on slope land based on a series of runoff scouring laboratory experiments for the conditions of different soil bulk densities (1.2, 1.35 and 1.5 g/cm3), flow discharges (2, 4, 8 and 16 L /min), and land slopes (5°, 10°, 15°, 20° and 25°). The results show that both flow discharge and land slope are important factors influencing flow velocity. And flow velocity can be expressed in a power function of land slope and flow discharge with the former as the major factor; soil bulk density has a certain influence on flow velocity and its effect varies with land slope. The Reynolds number, varying in the range of 248 to 1932, is independent from soil bulk density or land slope, and has a linear relationship with flow discharge. All the rill flows tested are supercritical of Froude number greater than one. The influence of soil bulk density on the Froude number also varies with land slope, similar to that of flow velocity. The resistance coefficient in the range of 0.04-0.955 increases first and then decreases with the increasing slope or flow discharge, and its dependency on soil bulk density is significant, manifesting a decreasing trend in the case of mild or steep land slope.

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