基于计算流体动力学的短管系统多分支和弯头流激振动可行性研究

K. Nguyen, Won-tae Kim, Seungpyo Hong, Haein Lee, Ahram Lee
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引用次数: 0

摘要

管道系统和其他设备的声致振动导致其过早磨损和失效。特别是在核电站中,管道系统内的气体流动速度和温度非常高。此外,如果由于管道系统中振动引起的频率与螺柱管的固有频率重叠,则振幅的大小将增加,从而导致严重的失效。例如,损坏可以认为是在主蒸汽管线的安全安全阀分支管处发生的流致声共振。特别地,管道系统不仅有多支路,而且还包括弯头,由于分支与弯头之间的相互作用,可能产生共振,使压力振荡比单支路更强。研究了一种计算流体力学(CFD)分析方法,用于预测和量化终端管道内的涡脱落频率和压力脉动幅度。研究了分支间压力波动幅值、分支数和弯头的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Feasibility Study for Multi-Branches and Elbow in Stub Pipe System due to Flow-Induced Vibration Using Computational Fluid Dynamics
Acoustic-induced vibration in piping system and other devices leads to premature wear and failure. Especially, in nuclear power plants, very high velocity and temperature gas flows inside pipe systems. Moreover, if a frequency due to the vibration in the piping system is overlapped with a natural frequency of the stud pipe, the magnitude of the amplitude will be increased resulting in severe failure. For example, damage can be considered as flow-induced acoustic resonance at the branch pipes of the safety relief valve in the main steam lines. Specially, the pipe system not only has multi-branches but also includes the elbow that the resonance could occurs making pressure oscillation stronger than that of a single branch because of the interaction between the branches and the elbow. This study has investigated a Computational Fluid Dynamics (CFD) analysis methodology to predict and quantify the vortex shedding frequencies and the pressure pulsation magnitude in the dead-end pipe. The influence of the pressure fluctuation amplitude between each branch, number of branch, and elbow is also investigated.
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