Examination Method for Flow Fields in Piping Systems of Nuclear Power Plants Using Computational Fluid Dynamics

K. Yoshimura, T. Sugii, T. Sano, E. Ishii, Takumi Kitagawa
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Abstract

We developed an examination method that uses computational fluid dynamics (CFD) to investigate the effects of a complex pipe geometry on flow fields. Two kinds of pipe model with different geometries are simulated to test the developed method. The simulation models were split into several computational regions to reduce the computation time. The simulation results showed that the fluctuation of the flow rate depended on the pipe geometry, which qualitatively agreed well with the experimental results. The simulation results of one of the two models showed a swirling flow around the orifice with large fluctuations of the flow rate. It was found that the swirling flow caused velocity fluctuations in the recirculation zone around the tap positions, which resulted in the large fluctuations of the flow rate. We also investigated the mechanisms generating the swirling flow. The simulation results showed that the high velocity of the flow along the wall was caused by the valve and the bend pipe. The high-velocity flow then moves along the pipe wall of the tee, which causes the flow to swirl. These results show that the developed method can be used to evaluate the flow fields in piping systems.
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核电站管道系统流场的计算流体力学检测方法
我们开发了一种使用计算流体动力学(CFD)的检测方法来研究复杂管道几何形状对流场的影响。对两种不同几何形状的管道模型进行了仿真验证。为了减少计算时间,将仿真模型划分为多个计算区域。仿真结果表明,流量波动与管道几何形状有关,与实验结果定性吻合较好。两种模型中的一种模型的仿真结果表明,在孔口周围存在旋转流动,且流量波动较大。研究发现,旋流引起了水龙头位置周围再循环区域的速度波动,导致流量波动较大。我们还研究了产生旋流的机理。仿真结果表明,沿壁流动的高速是由阀门和弯管引起的。然后,高速流体沿着三通管壁移动,导致流体旋转。结果表明,该方法可用于管道系统流场的计算。
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来源期刊
Transactions of the Atomic Energy Society of Japan
Transactions of the Atomic Energy Society of Japan Energy-Nuclear Energy and Engineering
CiteScore
0.50
自引率
0.00%
发文量
16
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