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Flow-induced Noise and Vibration Analysis of a Piping Elbow with/without a Guide Vane 被引量:4

Flow-induced Noise and Vibration Analysis of a Piping Elbow with/without a Guide Vane
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摘要 The effect of a guide vane installed at the elbow on flow-induced noise and vibration is investigated in the range of Reynolds numbers from 1.70×10^5 to 6.81×10^5, and the position of guide vane is determined by publications. The turbulent flow in the piping elbow is simulated with large eddy simulation (LES). Following this, a hybrid method of combining LES and Lighthill's acoustic analogy theory is used to simulate the hydrodynamic noise and sound sources are solved as volume sources in code Actran. In addition, the flow-induced vibration of the piping elbow is investigated based on a fluid-structure interaction (FSI) code. The LES results indicate that the range of vortex zone in the elbow without the guide vane is larger than the case with the guide vane, and the guide vane is effective in reducing flow-induced noise and vibration in the 90° piping elbow at different Reynolds numbers.
出处 《Journal of Marine Science and Application》 2014年第4期394-401,共8页 船舶与海洋工程学报(英文版)
基金 Supported by the Independent Innovation Foundation for National Defense of Huazhong University of Science and Technology(No.01-18-140019)
关键词 flow-induced noise flow-induced vibration piping elbow guide vane large eddy simulation fluid structure interaction Actran 管道弯头 振动分析 导叶片 流动 噪音 导向叶片 大涡模拟 流体动力
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  • 1李昆,汤荣铭,许宏庆.基于振动原理的无接触流量测量实验及模拟研究[J].实验流体力学,2007,21(1):77-81. 被引量:9
  • 2邢景棠,周盛,崔尔杰.流固耦合力学概述[J].力学进展,1997,27(1):19-38. 被引量:238
  • 3Paidoussis M P. Fluid-structure interactions: Slenderstructures and axial flow: Volume 1 [M]. San Diego (Calif.): Academic Press, 1998: 6--51.
  • 4Paidoussis M P. Fluid-structure interactions: Slender structures and axial flow: Volume 2 [M]. Amsterdam: Elsevier, 2004.
  • 5Ryu B J, Ryu S U, Kim G H. Vibration and dynamic stability of pipes conveying fluid on elastic foundations [J]. KSME International Journal, 2004, 18(12): 2148-- 2157.
  • 6Stangl M, Irschik H. Vibrations of pipes with internal flow and rigid body degrees of freedom [J]. Proceedings in Applied Mathematics and Mechanics, 2005, 5(1): 137--138.
  • 7Stangl M, Irschik H. Dynamics of an euler elastica pipe with internal flow of fluid [J]. Proceedings in Applied Mathematics and Mechanics, 2006, 6(1): 335--336.
  • 8Stangl M, Gerstmayr J, Irschik H. An alternative approach for the analysis of nonlinear vibrations of pipes conveying fluid [J]. Journal of Sound and Vibration, 2008, 310(3): 493 -- 51 l.
  • 9Evans R P, Blotter J D, Stephens A G. Flow rate measurements using flow-induced pipe vibration [J]. Journal of Fluids Engineering, 2004, 126(2): 280--285.
  • 10Evans R P, Wilkins S C, Goodrich L D. Method and apparatus for measuring the mass flow rate of a fluid [P]. United States, 6412352, 2000.

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  • 1吴石,张文平,封海波.充液管路系统中阀门流噪声的研究[J].噪声与振动控制,2005,25(3):51-53. 被引量:22
  • 2Moussa A M. Acoustic-Induced-Vibration Case Study for WDDM Onshore Facilities [ J ]. Oil and Gas Facilities, 2013, 2 (3) : 47 -51.
  • 3Clough L. The 100 Largest Losses 1972 -2009: Large Prop- erty Damage Losses in the Hydrocarbon Industries [ M ]. Lon- don: Marsh Global Energy Risk Engineering, cop. 2010.
  • 4Naudascher E, Rockwell D. Flow-Induced Vibration : An En- gineering Guide [ M ]. New York : Dover Publication, 2005.
  • 5Pittard M T, Evans R P, Maynes R D, et al. Experimental and Numerical Investigation of Turbulent Flow Induced Pipe Vibration in Fully Developed Flow [ J ]. Review of Scientific Instruments, 2004, 75 (7): 2393-2401.
  • 6Biswas S K, Ahmed N U. Optimal Control of Flow-Induced Vibration of Pipeline [ J]. Dynamics & Control, 2001, 11 (2) : 187 -201.
  • 7Yakut K, Sahin B, Canbazoglu S. Performance and Flow-In- duced Vibration Characteristics for Conical-ring Turbulators [ J]. Applied Energy, 2004, 79 (1): 65- 76.
  • 8Joint Industry Project. Guidelines for the Avoidance of Vibra- tion Induced Failure in Process Pipework [ M]. London: Ma- rine Technology Directorate Publication, 2000.
  • 9Hart K, Brooks S, Evans G, et al. Guidelines for the Avoid- ance of Vibration Induced Failure in Process Pipework [ M l- 2nd ed. London: Energy Institute Publication, 2008.
  • 10Eisinger F L. Piping Systems Providing Minimal Acoustical- ly-Induced Structural Vibrations and Fatigue [ P ]. US Pa- tent: 5711350, 1998 - 1 -27.

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