Simulation of laminar flow passing through a T-splitter plate and bridge pier

Rafi M. Qasim, T. Jabbar, S. Faisal
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Abstract

The present analysis focuses on the investigation of the two-dimensional flow passing a bridge pier nearby a splitter plate in different regimes of a laminar flow. The splitter plate is T-shaped and two different cases have been studied based on the form of the splitter plate relative to the bridge pier. The analysis is implemented for steady and incompressible water flow in an open channel. The current study deals with velocity vectors, drag coefficients, lift coefficients, and skin friction. The analysis of the velocity vector gave a good indicator about the separation process and dissipation, which occurs at the splitter plate before the occurrence of these processes at the front face of the pier, especially the flow separation process. Moreover, the velocity vector gave a good image about the flow direction at two regions, the first region is located between the rear portion of the splitter plate and the frontal face of the pier, while the second region is the wake region, which is located at the downstream of the pier. Negative drag coefficient, lift coefficient, and skin friction coefficient values are obtained from the analysis. This happens due to the existence of the splitter plate that leads to the reduction of these values.
通过t型分流板和桥墩的层流模拟
本文着重研究了在不同层流形式下通过桥墩附近隔板的二维流场。分岔板为t形,根据分岔板相对于桥墩的形式,研究了两种不同的情况。对明渠中稳定不可压缩水流进行了分析。目前的研究涉及速度矢量、阻力系数、升力系数和表面摩擦力。速度矢量的分析可以很好地反映分离过程和耗散过程,特别是流动分离过程,这些过程发生在分流板上,然后才发生在桥墩前面。此外,速度矢量给出了两个区域的良好的流动方向图像,第一个区域位于分流板后部与桥墩正面之间,第二个区域是尾迹区域,位于桥墩下游。通过分析得到负阻力系数、负升力系数和负表面摩擦系数。这种情况的发生是由于分裂板的存在导致这些值的减少。
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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