Investigations on Large-Scale Geometric Roughness Elements in Open Channels with Different Heights

Iman A. Alwan, Riyadh Z. Azzubaidi
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Abstract

Large-scale geometric roughness elements is one of the solutions that is used to protect openchannels from erosion. It is use to change the hydraulic characteristics of the flow. It may be concrete blocksor large stone placed at the bed of the channel to impose more resistance in the bed. The height of theseroughness elements is an important parameter that can affect the hydraulic characteristics of the flow. Usinga series of tests of T-shape roughness elements at three different heights, 3, 4.5, and 6cm, arranged in thefully rough configuration in order to investigate the velocity distributions along the flume. ANSYSParametric Design Language, APDL, and Computational Fluid Dynamics, CFD, were used to simulate theflow in an open channel with roughness elements. This simulation helps to find the best height of roughnesselements that can be used to change the hydraulic characteristics of the flow. The results showed that thevelocity values are decreased near the bed by about 61%, 58%, and 64% in case of 3cm, 4.5cm, and 6cmroughness heights consequently compared with the velocity of the control case. The velocity values areincreased near the free surface by about 32% and 19% in case of roughness elements height 6cm comparedwith 3cm and 4.5cm roughness heights respectively. The case of 6cm roughness height is considered to bethe effective case for decreasing the velocity values near the bed of the flume.
不同高度明渠大尺度几何粗糙度要素研究
大规模几何粗糙度元素是用于保护明渠免受侵蚀的解决方案之一。它用于改变流体的水力特性。它可能是混凝土块或大石块放置在河床施加更大的阻力。粗糙度元件的高度是影响流体水力特性的重要参数。通过在3、4.5、6cm三个不同高度的t形粗糙度单元的一系列试验,以完全粗糙的配置布置,以研究沿水槽的速度分布。采用ansys参数化设计语言(APDL)和计算流体动力学(CFD)模拟了带有粗糙度元素的明渠中的流动。该模拟有助于找到可用于改变流体水力特性的粗糙元件的最佳高度。结果表明,在3cm、4.5cm和6cm粗糙度条件下,床层附近的速度值分别比控制条件下降低了61%、58%和64%。当粗糙度单元高度为6cm时,自由表面附近的速度值分别比粗糙度高度为3cm和4.5cm时提高了约32%和19%。认为粗糙度高度为6cm的情况是降低槽床附近流速值的有效情况。
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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