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首页> 外文期刊>International journal of applied mechanics >Flow Resistance Equation in Sand-bed Rivers and Its Practical Application in the Yellow River
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Flow Resistance Equation in Sand-bed Rivers and Its Practical Application in the Yellow River

机译:砂床河流的流动性方程及其在黄河中的实际应用

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To fully reflect the effect of the flow characteristics, sidewall conditions and sediment concentrations on the bed roughness of sand-bed rivers, this study established a new flow resistance equation by introducing a comprehensive influence coefficient presented via a combination of power-function forms of the relative flow velocity, von Karman constant of sediment-laden flows and the ratio of particle size to viscous sublayer thickness. The comprehensive influence coefficient accordingly acts as a synthesized factor representing the combined effects of the flow intensity, bed material movement, energy consumption condition, and relative friction condition in the near-wall region of sediment-laden flows. Based on the field data from sediment-laden flows under scenarios of both high and low sediment concentrations, the performance of the proposed equation was validated to achieve the best accuracy in the calculation of Manning's roughness coefficient compared with that of several previously presented flow resistance equations. Furthermore, the proposed flow resistance equation was adopted to quantify the stable channel width of the Lower Yellow River (LYR), i.e., the optimum main channel width for sediment transportation in the typical wandering reach of the LYR. The calculated stable channel width is consistent with the current river training width of the LYR, indicating that the proposed equation has great potential as a theoretical tool that can be used to support the determination of the river training strategy for the LYR.
机译:为了充分反映流动特性,侧壁条件和沉积物浓度对砂床河流床粗糙度的影响,通过引入通过电力函数形式的组合引入综合影响系数来建立了新的流动阻力方程相对流速,沉积物的恒定恒定的恒定流量和粒径与粘性子层厚度的比率。因此,综合影响系数相应地用作代表沉积物流动近壁区域中的流强度,床材料运动,能量消耗条件和相对摩擦条件的合成因子。基于来自高沉积物浓度的场景中来自沉积物的场景,验证了所提出的方程的性能,以实现曼宁粗糙度系数的最佳精度,与几个先前呈现的流动阻力方程相比。此外,采用所提出的流动阻力方程来量化下黄河(Lyr)的稳定通道宽度,即Lyl的典型繁殖范围内的沉积物运输的最佳主通道宽度。计算出的稳定通道宽度与Lyr的当前河流训练宽度一致,表明所提出的方程具有巨大的潜力作为理论工具,可用于支持Lyr河流训练策略的确定。

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