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首页> 外文期刊>Hydrology and Earth System Sciences >Flow resistance of vegetated oblique weir-like obstacles during high water stages
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Flow resistance of vegetated oblique weir-like obstacles during high water stages

机译:高水位期间植被倾斜堰状障碍物的流阻

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At high water stages, obstacles (submerged and particularly emerged vegetation) in the flood plains of a river contribute to the flow resistance and hamper the conveyance capacity. In particular the elevated vegetated parts are expected to play an important role. The objective of this research work is to determine the form drag due to vegetated oblique weir-like obstacles. Experiments have been performed to measure the energy head losses for a range of subcritical flow conditions, varying discharges and downstream water levels. The energy head loss caused by the submerged vegetated weir-like obstacle has been modeled using an expansion loss form drag model that has been derived from the one-dimensional momentum conservation equation and accounts for the energy loss associated with a deceleration of the flow downstream of a sudden expansion. The results have been compared with the experimental data and showed an overall good agreement.
机译:在高水位时,河流泛滥平原中的障碍物(被淹没的植被和特别是出现的植被)会导致流阻并阻碍输送能力。特别是高架的植被部分有望发挥重要作用。这项研究工作的目的是确定由于植被倾斜的堰状障碍物引起的形式阻力。已经进行了实验,以测量一系列亚临界流动条件,变化的排放量和下游水位的能量损失。已使用一维动量守恒方程推导的膨胀损失形式阻力模型来模拟由淹没的植被状堰状障碍物引起的能量损失,该能量损失是与一维动量守恒方程有关的能量损失。突然膨胀。将结果与实验数据进行比较,显示出总体良好的一致性。

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