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Numerical Investigation of the Scale Effects on Flow Pattern Around Rectangular Bridge Piers Using Fluent Software

机译:用Fluent软件数值模拟矩形桥墩绕流的尺度效应。

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Flow pattern around the bridge piers includes water surface profile, velocity profile, shear velocity, shear stress distribution, etc. In this research, the effects of the base shape along with scale effects on the flow pattern around the rectangular bridge piers were numerically calculated through "Fluent Software", using Horizontal Velocity Distribution (Vx) and Vertical Velocity Distribution (Vy) criteria. The results showed that in studying the horizontal component of velocity (Vx) for the rectangular bridge piers, the vortices activity radius was 8 times of the length of the pier, and the minimum channel width for vortices activity was 16 times of the length of the Bridge pier; also, the minimum channel length in front of the pier was 4 times of the length of the pier and behind which, it was 25 times more than the bridge pier. Finally, the minimum channel length for the vortexes activity was calculated to be 29 times more than the bridge pier length. Furthermore, for the vertical component of velocity, the flow pattern around the base of the bridge cannot be an appropriate parameter for checking the effects of the length and width of the channel.
机译:桥墩周围的流型包括水面剖面,速度剖面,剪切速度,切应力分布等。在这项研究中,通过数值计算,基本形状以及尺度效应对矩形桥墩周围流型的影响通过使用水平速度分布(Vx)和垂直速度分布(Vy)准则的“ Fluent软件”。结果表明,在研究矩形桥墩的水平速度分量(Vx)时,涡旋活动半径是墩长的8倍,而最小涡流活动通道宽度是墩长的16倍。桥墩;同样,码头前面的最小通道长度是码头长度的4倍,后面的最小通道长度是桥墩的25倍。最后,计算出的涡流活动的最小通道长度是桥墩长度的29倍。此外,对于速度的垂直分量,桥基周围的流型不能成为检查通道长度和宽度影响的合适参数。

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