Experimental investigation on a new method for modifying the geometry of a vertical drop edge equipped with a screen on the amount of energy dissipation

R. Daneshfaraz, R. Norouzi, Maryam Abar
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Abstract

The aim of the current research is to investigate the effect of geometry and different angles (180°, 150°, 120° and 90°) of the edge of a vertical drop with a height of 0.15 m with and without a vertical screen on energy dissipation. The finding showed that the triangulation plane forms a vertical drop at different angles of 180°, 150°, 120° and 90° without a screen that increases the energy dissipation of the drop, which is highest at an angle of 90°, by 50.5%. In the vertical drop with a screen, reducing the angle also leads to a decrease in energy dissipation, so the highest energy dissipation occurs at an angle of 180° with a 45.2% increase in energy dissipation compared to the vertical drop without a screen. The relative depth of the edge and the relative depth of the vertical drop pool of the triangular plane are different at the angle vertex and its wings, in such a way that the relative depth of the edge at the vertex is less than the wings and the relative depth of the pool at the vertex is greater than the wings.
关于修改装有筛网的垂直落差边缘几何形状的新方法对能量耗散量影响的实验研究
当前研究的目的是调查高度为 0.15 米的垂直水滴边缘的几何形状和不同角度(180°、150°、120° 和 90°)对能量耗散的影响。研究结果表明,三角测量平面在 180°、150°、120°和 90°不同角度形成的垂直落差,在没有屏幕的情况下,会使落差的能量耗散增加 50.5%,其中 90°角度的能量耗散最大。在有滤网的垂直水滴中,减小角度也会导致能量耗散的减少,因此能量耗散最大的角度是 180°,与没有滤网的垂直水滴相比,能量耗散增加了 45.2%。三角形平面边缘的相对深度和垂直下落水池的相对深度在角度顶点和两翼是不同的,这样,顶点处边缘的相对深度小于两翼,而顶点处水池的相对深度大于两翼。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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