Vane Angle Influence on the Flow Pattern around a Circular Pier

Q4 Engineering
T. Jabbar, Rafi M. Qasim, Bassam A. Mohammed
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引用次数: 0

Abstract

This paper intends to numerically analyze the hydrodynamic characteristics of the flow pattern that surrounds the circular pier near the vane angle. These include flow velocity, turbulent intensity, and pressure. A computational fluid dynamic is proposed to simulate the two-dimensional model by using the finite volume method, while the k - ε turbulence model is used to describe the turbulent model. The vane is located upstream of the pier, with its dimensions as function of the pier diameter. The distance between the vane and the pier center is equal to the pier diameter, the angle of the vane is put with a range from 60o to 180o, and the pier diameter is equal to 10 mm. The turbulent flow has a Reynolds number that varies from 20000 to 50000. The existence of the vane angle leads to two different processes, which are flow separation and flow dissipation, which have a direct effect on flow velocity, turbulent intensity, and pressure. From the current numerical results, the relationships between Reynolds number and average flow velocity, maximum flow velocity, turbulent intensity, and maximum turbulent intensity are more sensitive to flow separation and flow dissipation along the vane. Also, positive and negative pressure distributions have a higher influence on flow separation and flow dissipation.
叶片角对圆形桥墩周围流型的影响
本文拟对圆形桥墩周围叶片角附近流型的水动力特性进行数值分析。这些参数包括流速、湍流强度和压力。提出了一种计算流体力学方法,用有限体积法模拟二维模型,用k - ε湍流模型描述湍流模型。叶片位于桥墩的上游,其尺寸随桥墩直径的变化而变化。叶片与桥墩中心的距离等于桥墩直径,放置叶片的角度为60 ~ 180度,桥墩直径等于10毫米。紊流的雷诺数在20000到50000之间变化。叶片角的存在导致了两个不同的过程,即流动分离和流动耗散,这两个过程对流速、湍流强度和压力有直接影响。从目前的数值结果来看,雷诺数与平均流速、最大流速、湍流强度、最大湍流强度之间的关系对沿叶片的流动分离和流动耗散更为敏感。正负压分布对流动分离和流动耗散的影响较大。
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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来源期刊
U.Porto Journal of Engineering
U.Porto Journal of Engineering Engineering-Engineering (all)
CiteScore
0.70
自引率
0.00%
发文量
58
审稿时长
20 weeks
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