雷诺数对明渠湍流参数的影响

Pritam Kumar, Anurag Sharma
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摘要

实验研究分析了雷诺数对非均匀砂床通道中湍流特性的影响。考虑了 36500-53886 范围内的五个雷诺数,在非均匀砂床通道上进行了稳定流模拟。本文试图通过细致的实验室研究来阐明雷诺数对湍流特性的影响。观察结果表明,雷诺数越高,纵向流速越大。当雷诺数增加 10% 到 47% 时,各种湍流特性表现出不同的趋势。具体来说,纵向速度、纵向湍流强度、垂直湍流强度、湍流动能、雷诺剪应力和泰勒尺度分别增加了 5%至 30%、15%至 25%、15%至 20%、25%至 60%、20%至 40%和 35%至 45%。泰勒尺度分析表明,雷诺数越高,幅度越大。对湍流各向异性、速度波动的三阶矩、峰度、湍流动能产生和耗散的深入研究为了解不同雷诺数下的流动行为提供了更多信息。这项研究有助于更全面地了解不同雷诺数条件下非均匀砂床通道中的流动动力学,缩小了实验室研究与实际应用场景之间的差距。
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Reynolds number effect on the parameters of turbulent flows over open channels
Experimental investigations were conducted to analyze the effect of Reynolds numbers on turbulent flow properties in a nonuniform sand bed channel. Steady flow simulations were performed over the nonuniform sand bed channel, considering five Reynolds numbers within the range of 36500–53886. This article endeavors to delineate the influence of Reynolds number on turbulent flow properties through meticulous laboratory studies. Observations revealed that higher Reynolds numbers corresponded to increased longitudinal velocity. As the Reynolds number increases by 10 to 47%, various turbulent flow properties exhibit distinct trends. Specifically, the longitudinal velocity, longitudinal turbulent intensity, vertical turbulent intensity, turbulent kinetic energy, Reynolds shear stress, and Taylor scale show increases ranging from 5 to 30%, 15 to 25%, 15 to 20%, 25 to 60%, 20 to 40%, and 35 to 45%, respectively. Taylor scale analysis indicated higher magnitudes associated with higher Reynolds numbers. In-depth examinations of turbulent anisotropy, third-order moments of velocity fluctuations, kurtosis, turbulent kinetic energy production, and dissipation provided additional insights into flow behavior across different Reynolds numbers. This study contributes to a more comprehensive understanding of flow dynamics in nonuniform sand bed channels under varying Reynolds number conditions, bridging the gap between laboratory studies and real-world scenarios.
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