On the hydraulic performance of the inclined drops: the effect of downstream macro-roughness elements

F. Kalateh, Ehsan Aminvash, R. Daneshfaraz
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Abstract

The main goal of the present study is to investigate the effects of macro-roughnesses downstream of the inclined drop through numerical models. Due to the vital importance of geometrical properties of the macro-roughnesses in the hydraulic performance and efficient energy dissipation downstream of inclined drops, two different geometries of macro-roughnesses, i.e., semi-circular and triangular geometries, have been investigated using the Flow-3D model. Numerical simulation showed that with the flow rate increase and relative critical depth, the flow energy consumption has decreased. Also, relative energy dissipation increases with the increase in height and slope angle, so that this amount of increase in energy loss compared to the smooth bed in semi-circular and triangular elements is 86.39 and 76.80%, respectively, in the inclined drop with a height of 15 cm and 86.99 and 65.78% in the drop with a height of 20 cm. The Froude number downstream on the uneven bed has been dramatically reduced, so this amount of reduction has been approximately 47 and 54% compared to the control condition. The relative depth of the downstream has also increased due to the turbulence of the flow on the uneven bed with the increase in the flow rate.
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倾斜水滴的水力性能:下游宏观粗糙度要素的影响
本研究的主要目的是通过数值模型研究宏观粗糙度对倾斜水滴下游的影响。由于宏观粗糙度的几何特性对斜面水滴下游的水力性能和有效消能至关重要,因此使用 Flow-3D 模型研究了两种不同几何形状的宏观粗糙度,即半圆形和三角形。数值模拟结果表明,随着流速和相对临界深度的增加,流动能量消耗有所降低。此外,相对能量耗散也随着高度和倾斜角度的增加而增加,因此与光滑床面相比,半圆形和三角形元素的能量损失增加量在高度为 15 厘米的倾斜水滴中分别为 86.39% 和 76.80%,在高度为 20 厘米的水滴中分别为 86.99% 和 65.78%。不平床面下游的弗劳德数大幅降低,与对照条件相比,降低了约 47% 和 54%。下游的相对深度也随着流速的增加而增加,这是由于不平床面的水流湍流所致。
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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