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水下采油树液压管道涡激振动分析

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摘要 水下采油树(Christmas)是水下油气田开发中重要的井口控制装置,常年受到波浪和海流的影响,若设计不合理,会引发水下采油树液压管道产生涡激振动(vortex-induced vibration,VIV)现象,进而会引发液压管道的疲劳破坏。为了保证水下采油树的可靠性和使用寿命,本文利用渤海海域实测统计资料并结合水下采油树液压管道的设计参数,对水下采油树液压管道的涡激振动和直接波浪作用对液压管道引发的疲劳破坏进行分析。
出处 《中国石油和化工标准与质量》 2023年第14期110-112,共3页 China Petroleum and Chemical Standard and Quality
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  • 1曲雪,薛鸿祥,唐文勇.深海顶张式立管顺流涡激振动响应预报方法[J].振动与冲击,2013,32(15):32-36. 被引量:7
  • 2Tognarelli M A, Slocum S T, Frank W R, et al. VIV response of a long flexible cylinder in uniform and linearly sheared currents[C]//Proc. Offshore Technology Conference. Houston:OTC16338, 2004.
  • 3Chaplin J R, Bearman P W, Cheng Y, et al. Blind predictions of laboratory measurements of vortex-induced vibrations of a tension riser[J]. Journal of Fluid and Structure, 2005, 21(1) : 25-40.
  • 4Vikestad K. Multi-frequency response of a cylinder subjected to vortex shedding and support motions[D]. Norwegian University of Science and Technology, 1998.
  • 5Meneghini J R, Bearman P W. Numerical simulation of high amplitude oscillatory flow about a circular cylinder[J]. Journal of Fluid Structure, 1995, 9(4) : 435-455.
  • 6Dong S, Kamiadakis G E. DNS of Now past a stationary and oscillating rigid cylinder at Re = 10 000[J]. Journal of Fluid Structure, 2005, 20(4): 519-531.
  • 7Vandiver J K. SHEAR7 V4.3 Program Theorotical Manual[ R]. Massachusetts Institute of Technology, 2003.
  • 8Larsen C M, Vikestad K, Yttervik R, et al. V1VANA Theory Manual[M]. Norway: MARINTEK, 2001.
  • 9Jong J Y, Vandiver J K. Response analysis of the flow-induced vibration of flexible cylinders tested at Castine[ R]. Massachusetts Institute of Technology, 1983.
  • 10Vandiver J K. Drag coefficients of long flexible cylinders[C]//Prec. Offshore Technology Conference. Houston: 01E4490, 1983: 405- 414.

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