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Simulation Study of Anisotropic Flow Resistance of Farmland Vegetation

机译:田地植被各向异性流动性的仿真研究

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Farmland vegetation is commonly cultivated with uniform planting spacing and heights. The effect of these features on resistance to hydraulic erosion is unclear. Hydraulic model experiments with the angle between the crop rows and the water flow direction set at 15 degrees, 30 degrees, 45 degrees or 90 degrees were conducted to analyze variation in the law of water flow resistance under partial or complete submergence of the crop. Cultivation can impact the flow resistance on slopes and this effect was greater when the crop was partially submerged. When planting spacing, slope, and water depth were constant, the change of the water flow Darcy-Weisbach resistance coefficient f with crop row-water flow angle was f(15 degrees) > f(30 degrees) > f(45 degrees) > f(90 degrees). This suggests that flow resistance of farmland vegetation is anisotropic. The water flow resistance coefficient of crops that were partly submerged increased with water depth, but decreased with water depth when the crop was completely submerged. At the critical change from partial submergence to complete submergence, the water flow resistance coefficient was the highest when water depth was equal to crop height. These results may be useful for optimizing farmland planting and soil and water conservation.
机译:农田植被通常用均匀的种植间隔和高度培养。这些特征对液压侵蚀性的影响尚不清楚。液压模型实验与裁剪行和水流方向之间的角度设定为15度,30度,45度或90度,以分析作物的部分或完全淹没的水流动性定律的变化。栽培会影响斜坡上的流动阻力,并且当作物部分浸没时,这种效果更大。当种植间隔,斜率和水深是恒定的时,水流达西 - WEISBACH电阻系数F的变化具有作物行 - 水流量角度为F(15度)> F(30度)> F(45度)> f(90度)。这表明农田植被的流动性是各向异性的。部分浸没的作物的水流动阻力系数随着水深而增加,但随着水深的完全浸没时,随着水深而降低。在部分淹没到完全淹水的临界变化下,水流量的水流量是最高的,水深等于作物高度。这些结果可用于优化农田种植和水土保持。

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