Numerical Assessment of Flow-Induced Vibration in Main Steam Piping Using Computational Fluid Dynamics (CFD); 전산유체역학 기술을 활용한 주증기 배관 유체유발 진동 평가

  • Lee, Haein; 
  • Jung, Jae-hyun; 
  • Lee, Ah-ram; 
  • Kim, Won-tae; 
  • Choi, Sanghun
Citations

SCOPUS

0

초록

Flow-induced vibrations in piping system lead to premature wear and failure of the system and equipment. If a vortex shedding frequency owing to the dead-end pipe branch is overlapped with a pipe natural frequency, the magnitude of the amplitude increases, resulting in a fatigue failure. In particular, the steam used in the nuclear power plant flows fast under a high temperature and pressure, causing serious damage in the system and equipment if flow-induced vibrations are delivered to the steam generator. This study performed computational fluid dynamics (CFD) simulations to predict the vortex shedding frequencies of the main steam atmosphere dump valve (MSADV) and main steam safety valve (MSSV) in the main steam line of nuclear power plants. The CFD-based evaluation method was validated by comparing the actual quantities of the vibrations in the pipe at 100% power operation of the nuclear power plant. © 2024 The Korean Society of Mechanical Engineers.

키워드

Comprehensive Vibration Assessment Program; Computational Fluid Dynamics; Flow-Induced Resonance; Flow-Induced Vibration; Vortex Shedding
제목
Numerical Assessment of Flow-Induced Vibration in Main Steam Piping Using Computational Fluid Dynamics (CFD); 전산유체역학 기술을 활용한 주증기 배관 유체유발 진동 평가
저자
Lee, Haein; Jung, Jae-hyun; Lee, Ah-ram; Kim, Won-tae; Choi, Sanghun
DOI
10.3795/KSME-B.2024.48.3.193
발행일
2024-03
유형
Article
저널명
대한기계학회논문집 B
권
48
호
3
페이지
193 ~ 202