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Analysis of Thermal-Fluid-Structure Coupling and Resonance Forecast for Link Butterfly Valve Under Small Opening 被引量:7

Analysis of Thermal-Fluid-Structure Coupling and Resonance Forecast for Link Butterfly Valve Under Small Opening
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摘要 When the link butterfly valve operates at a small opening degree in high temperature working conditions,it is prone to the problem that the valve is stuck,the strength is insufficient and the butterfly plate is violently vibrating.This paper shows simulation experiments of both thermal-fluid-structure coupling and resonance forecast about DN600 link butterfly valve in the working conditions of 250℃and 0.5 MPa by ANSYS software.The medium is mixed with compressed air and flue gas.Flow field characteristics of the valve and stress deformation,modal and flow-induced vibration of butterfly plate are analyzed when the valve opening is less than 30%.The results indicate that,when the valve opening is less than 30%,fluid flow is relatively smooth in front of butterfly plate,a large number of vortexes are found behind the butterfly plate,and fluid flow is greatly chaotic in this position.The equivalent maximum stress and deformation of butterfly plate are relatively large when the valve locates in openings between 10%and 30%;the intensity of the butterfly plate is enough;the axial deformation does not impact opening and closing of the valve.The butterfly plate is likely resonant when the valve opening is less than 10%.The research of this paper provides a crucial reference for flow field characteristics of link butterfly valve,an analysis of intensity and rigidity of butterfly plate,and a resonance forecast of butterfly plate when the valve works in small opening. When the link butterfly valve operates at a small opening degree in high temperature working conditions,it is prone to the problem that the valve is stuck,the strength is insufficient and the butterfly plate is violently vibrating.This paper shows simulation experiments of both thermal-fluid-structure coupling and resonance forecast about DN600 link butterfly valve in the working conditions of 250℃ and 0.5 MPa by ANSYS software.The medium is mixed with compressed air and flue gas.Flow field characteristics of the valve and stress deformation,modal and flow-induced vibration of butterfly plate are analyzed when the valve opening is less than 30%.The results indicate that,when the valve opening is less than 30%,fluid flow is relatively smooth in front of butterfly plate,a large number of vortexes are found behind the butterfly plate,and fluid flow is greatly chaotic in this position.The equivalent maximum stress and deformation of butterfly plate are relatively large when the valve locates in openings between 10% and 30%; the intensity of the butterfly plate is enough; the axial deformation does not impact opening and closing of the valve.The butterfly plate is likely resonant when the valve opening is less than 10%.The research of this paper provides a crucial reference for flow field characteristics of link butterfly valve,an analysis of intensity and rigidity of butterfly plate,and a resonance forecast of butterfly plate when the valve works in small opening.
作者 李树勋 朱禄 王伟波 肖奎军 徐晓刚 张宝生 LI Shuxun;ZHU Lu;WANG Weibo;XIAO Kuijun;XU Xiaogang;ZHANG Baosheng
出处 《Journal of Shanghai Jiaotong university(Science)》 EI 2019年第3期341-350,共10页 上海交通大学学报(英文版)
基金 the National Natural Science Foundation of China(No.51569012)
关键词 LINK BUTTERFLY valve thermal-fluid-structure coupling stress deformation RESONANCE FORECAST link butterfly valve thermal-fluid-structure coupling stress deformation resonance forecast
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  • 1王锁芳,吕海峰,夏登勇.封严篦齿结构特性的数值分析和实验研究[J].南京航空航天大学学报,2004,36(6):732-735. 被引量:22
  • 2黄守龙,王祖尧,马大为.空腔倾向对泄漏影响的流动分析[J].推进技术,1995,16(2):40-45. 被引量:9
  • 3朱高涛,刘卫华.迷宫密封泄漏量计算方法的分析[J].润滑与密封,2006,31(4):123-126. 被引量:52
  • 4林丽,刘卫华.基于FLUENT的迷宫密封机理研究[J].中国机械工程,2007,18(18):2183-2186. 被引量:29
  • 5CEBRAL ,J R. Loose coupling algorithms for fluid- structure interaction [D]. Virginia, USA: Institute for Computational Science and Informatics, George Ma- son University, 1996.
  • 6BLOM F J. A rnonolithical fluid-structure interaction algorithm applied to the piston problem [J]. Computer Methods in Applied Mechanics and Engineering, 1998, 167(3): 369-391.
  • 7LIAN Y, SHYY W, IFJU P, et al. A computa- tional model for coupled membrane-fluid dynamics [C]//Proceedings of 32nd AIAA Fluid Dynamics Con- ference and Exhibit. Missouri, USA: AIAA, 2002: 2492-2494.
  • 8BEARMAN P W. Circular cylinder wakes and vortex- induced vibrations [J]. Journal of Fluids and Struc- tures, 2011, 27(5): 648-658.
  • 9GABBAI R D, BENAROYA H. An overview of modeling and experiments of vortex-induced vibration of circular cylinders [J]. Journal of Sound and Vibration, 2005, 282(3): 575-616.
  • 10TUREK S, EIRON J. Proposal for numerical benchmark- ing of fluid-structure interaction between an elastic object and laminar incompressible flow [C]//Leeture Notes in Computational Science and Engineer- ing, Fluid-Structure Interaction. Berlin, Germany: Springer-Verlag, 2006: 371-385.

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