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The influence of combined vegetation stalk thickness on water flow resistance

机译:植被秸秆厚度对水流动阻力的影响

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Vegetation that exists in the natural environment often involves a combination of plants with different stalk thicknesses. This combination affects the hydrodynamic properties of the ground surface, which in turn changes the velocity and distribution of run-off. Current research on the influence of vegetation stalk thickness on water flow resistance is mostly focused on uniform vegetation. There have been few studies on the influence of non-uniform vegetation on water flow resistance, and most have been qualitative in nature. In order to study the quantitative relationship between combinations of different stalk thicknesses and the water flow resistance of slope vegetation, a laboratory experiment was performed using a flume. The results show that when two different plant stalk thicknesses are staggered and combined, the diameters of the plants exhibit a power function relationship with the Darcy-Weisbach resistance coefficient. When the diameter of the stem of one of the plants remains constant, at the same water depth, the coefficient of water flow resistance increases with the diameter of the stem of the other plant. Additionally, the coefficient of the vegetation flow resistance increases with increasing water depth. In the non-submerged state, as the water depth increases, the rate at which the water flow resistance coefficient increases gradually declines, and as the diameter of any plant stem increases, the rate at which the water flow resistance coefficient increases also declines gradually. These findings provide a theoretical basis for the prevention and control of soil erosion and have important practical implications for maintaining water and soil resources.
机译:在自然环境中存在的植被通常涉及具有不同茎厚度的植物的组合。该组合影响地面的流体动力学性质,其又改变了径流的速度和分布。目前关于植被秸秆厚度对水流阻力的影响的研究大多集中在均匀的植被上。有没有研究非均匀植被对水流动阻力的影响,大多数都是质量的。为了研究不同秆厚度的组合与坡植被的水流动性之间的定量关系,使用水槽进行实验室实验。结果表明,当两种不同的植物秆厚度交错并合并时,植物的直径与达西 - Weisbach电阻系数具有功率功能关系。当植物之一的杆的直径保持恒定时,在相同的水深时,水流动系数随着其他植物的杆的直径而增加。另外,植被流动阻力的系数随着水深的增加而增加。在非淹没状态下,随着水深增加,水流动性系数增加逐渐下降,随着任何植物杆的直径增加,水流动性系数增加的速率也逐渐下降。这些发现为预防和控制土壤侵蚀提供了理论依据,并对维持水土资源具有重要的实际影响。

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