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Experimental Investigation of Screen as Energy Dissipators in the Movable-Bed Channel

机译:可移动床通道屏幕屏幕的实验研究

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The experimental results indicate that screens with a certain porosity placed vertically in the supercritical flow direction could dissipate a considerable amount of flow energy. Unlike the former studies which have been carried out in the fixed-bed flumes, this study investigates the energy dissipation through the screen in the movable bed at the downstream of the screen. The experiments have been carried out by the screens with 40% and 50% porosities, single and double arrangements of screens and three different bed particle sizes. The supercritical Froude number varied in the range of 5-18. According to the results, double screens with 40% porosity have the highest energy dissipation. Also, the single screens with 50% porosity have the minimum bed scour for a constant amount of energy dissipation. The theoretical multivariate equations were derived based on dimensional analysis, and the related coefficients were obtained by using experimental results.
机译:实验结果表明,在超临界流动方向上垂直放置的具有某种孔隙率的屏幕可以消散相当大的流量。与在固定床冲灯中进行的前一项研究不同,本研究调查通过屏幕下游的可移动床中的屏幕的能量耗散。该实验已经通过筛网进行40%和50%的孔隙,单一和双布置和三种不同的床粒径。超临界Froude号码在5-18的范围内变化。根据结果​​,具有40%孔隙度的双屏具有最高的能量耗散。此外,具有50%孔隙率的单个屏幕具有最小床冲刷,用于恒定量的能量耗散。基于尺寸分析导出理论多变量方程,通过使用实验结果获得相关系数。

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