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Experimental and Numerical Investigation of the Flow Hydraulic in Gradual Transition Open Channels

机译:逐步过渡开放通道流动液压的实验性和数值研究

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Channel expansions are common in both natural and artificial open channels. With increasing cross-sectional dimensions in an expansion, the flow decelerates. Due to separation of flow and subsequent eddy formation, a significant head loss is occurred along the transition. This study presents the results of experimental investigations on subcritical flow along the expansive transition of rectangular to trapezoidal channels. Also, a numerical simulation was developed using the finite volume method with Reynolds Stress turbulent model. Water surface profiles and velocity distributions of flow through the transition were measured experimentally and compared with the numerical results. Also, hydraulic efficiency of the transition and coefficient of energy head loss were calculated. The results show that with increasing the upstream Froude number, hydraulic efficiency of the transition and coefficient of energy head loss are decreased and increased, respectively. The results also showed the ability of numerical simulation for simulating the flow separation zones and bed shear stress along the transition for different inlet discharges and inflow Froude numbers.
机译:渠道扩展在天然和人造开放渠道中很常见。随着膨胀中的横截面尺寸的增加,流动减速。由于流动和随后的涡流分离,沿着过渡发生了显着的头部损耗。本研究提出了沿矩形到梯形通道的膨胀转变的亚临界流动的实验研究结果。此外,使用具有雷诺应力湍流模型的有限体积法开发了数值模拟。通过实验测量过渡流过过渡的水表面曲线和流速分布,并与数值结果进行比较。而且,计算了过渡的液压效率和能量头损失系数。结果表明,随着增加的FRoude数,液压效率和能源头部损失系数分别降低和增加。结果还表明,用于模拟流动分离区和床剪切应力的数值模拟能力沿着不同的入口排出和流入FRoude数。

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