期刊文献+

基于流固耦合的U型管流致振动数值分析 被引量:6

Numerical Simulation of Fluid-Induced Vibration in U-Tube Based on FSI
下载PDF
导出
摘要 利用ANSYS+CFX双向耦合的方法对换热器U型管的流致振动问题进行仿真分析。分别建立大涡模拟的流体控制方程和结构振动的控制方程,得到掠过U型管流体的升力系数、阻力系数曲线以及U型管振动加速度级谱线。分析表明,结构振动的主要频率成分在流体升力和阻力变化频率和结构本身的固有频率附近,可为工程实践提供参考,具有理论和实践价值。 Fluid-induced vibration of U-tube was analyzed by two-way FSI with ANSYS and CFX software.Large eddy simulation model and structural vibration model were built,obtaining the time-dependent lift coefficient,drag coefficient of the fluid flowing past U-tube and the vibration acceleration level of U-tube.The results show the primary frequency of structure vibration is near to the frequencies of left and drag and the natural frequencies of U-tube.Numerical simulation results can support the engineering practice.
出处 《中国舰船研究》 2011年第4期29-33,共5页 Chinese Journal of Ship Research
基金 国家自然科学基金资助(10702022)
关键词 流致振动 流固耦合 大涡模拟 fluid-induced vibration fluid-structure interaction large eddy simulation
  • 相关文献

参考文献4

  • 1SCWARZ G W. Preventing vibration in Shell-and-tube heat exchange [J ]. Chemical Engineering, 1976, 83 (15), 134-140.
  • 2钱颂文.袁明可换热器振动破坏、振动应力及改进措施.石油化工设备技术,1982,.
  • 3PETTIGREWA M J,TAYLORB C E. Vibration analysis of shell-and-tube heat exchangers:an overview-Part 1: flow, damping, fluidelastic instability [J]. Journal of Fluids and Structures,2003,18(5):469-483.
  • 4王亚玲,刘应中,缪国平.圆柱绕流的三维数值模拟[J].上海交通大学学报,2001,35(10):1464-1469. 被引量:77

二级参考文献3

  • 1刘应中,高等流体力学,2000年
  • 2黄祥鹿,海洋工程流体力学及结构动力响应,1992年
  • 3易家训,流体力学,1982年

共引文献76

同被引文献58

  • 1支浩,汤慧萍,朱纪磊.换热器的研究发展现状[J].化工进展,2009,28(S1):338-342. 被引量:48
  • 2孙宝芝,郭家敏,雷雨,杨龙滨,张国磊,李彦军.船用蒸汽蓄热器非平衡热力过程[J].化工学报,2013,64(S1):59-65. 被引量:14
  • 3张红斌,李守军,胡尧和,谢锡善,王剑志.国外关于蒸汽发生器传热管用Inconel 690合金研究现状[J].特钢技术,2003,8(4):2-11. 被引量:54
  • 4刁兴中,沈时芳,刘志人,宋志坚,顾正祥,何斌.平面U型弯管固有振动分析的有限元方法及试验研究[J].核动力工程,1994,15(5):401-407. 被引量:2
  • 5SUN B Z, YANG Y L. Numerically investigating the in- fluence of tube support plates on thermal-hydraulic characteristics in a steam generator[J]. Applied Ther- mal Engineering, 2013, 51 ( 1/2) : 611-622.
  • 6PITTIGREW M J, TAYLOR C E, SUBASH N. Flow-induced vibration specifications for steam genera- tors and liquid heat exchangers: AECL-11401 [R]. Chalk River, Ontario: Fluid Sealing and Dynamics Branch Chalk River Laboratories, 1995.
  • 7AXISA F, ANDUNES J, VILLARD B. Overview of nu- merieal methods for predicting flow-induced vibration [J]. Journal of Pressure Vessel Technology, 1988, 110 (1): 6-14.
  • 8FERNG Y M, TSENG Y S, PEI B S, et al. A two-phase methodology to predict FAC wear sites in the piping system of a BWR [J]. Nuclear Engineering and De- sign, 2008, 238(9): 2189-2196.
  • 9WAGNER W, COOPER J R, DITTMANN A, et al. The IAPWS industrial formulation 1997 for the ther- modynamic properties of water and steam [J~. Journal of Engineering for Gas Turbines and Power Transac- tions of the ASME, 2000, 122( 1 ) : 150-182.
  • 10Baozhi Sun,Lusong Zheng,Longbin Yang,Yanjun Li,Jianxin Shi,Shanghua Liu,Hongliang Qi.??A coupled stress analysis of the steam generator tube considering the influence of the fluid flow and heat transfer in the primary and secondary sides(J)Applied Thermal Engineering . 2015

引证文献6

二级引证文献12

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部