Wei Lin, Zhu Guorong, Qian Jinyuan, Fei Yang, Jin Zhijiang
Institute of Process Equipment, Zhejiang University, Hangzhou, China.
Technical Development Department, Ningbo Special Equipment Inspection Center, Ningbo, China.
PLoS One. 2015 Jun 10;10(6):e0129050. doi: 10.1371/journal.pone.0129050. eCollection 2015.
The main objective of this paper is to study the characteristics of flow-induced noise in high pressure reducing valve (HPRV) and to provide some guidance for noise control. Based on computational fluid dynamics (CFD), numerical method was used to compute flow field. Ffowcs Williams and Hawkings Model was applied to obtain acoustic signals. The unsteady flow field shows that noise sources are located at the bottom of plug for valve without perforated plate, and noise sources are behind the plate for valve with perforated plate. Noise directivity analysis and spectrum characteristics indicate that the perforated plate could help to reduce noise effectively. Inlet pressure has great effects on sound pressure level (SPL). The higher inlet pressure will lead to larger SPL at high frequency. When the maximum Ma is close to 1, SPL at low frequency becomes very high.
本文的主要目的是研究高压减压阀(HPRV)中流动诱导噪声的特性,并为噪声控制提供一些指导。基于计算流体动力学(CFD),采用数值方法计算流场。应用Ffowcs Williams和Hawkings模型获取声学信号。非定常流场表明,对于无孔板阀门,噪声源位于阀芯底部;对于有孔板阀门,噪声源位于孔板后方。噪声指向性分析和频谱特性表明,孔板有助于有效降低噪声。入口压力对声压级(SPL)有很大影响。较高的入口压力会导致高频处的声压级更大。当最大马赫数接近1时,低频处的声压级会变得非常高。