期刊文献+

地震断层作用下的埋地管道等效分析模型 被引量:16

An Equivalent Analytical Model of Buried Pipelines Subject to Fault Movement
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摘要 地震作用下,活动断层附近的埋地管道易发生强度屈服、局部屈曲或整体失稳等形式的破坏,建立准确、高效的埋地管道在断层作用下的计算模型,对管道的抗震设计和震后安全状态评估具有重要的实用价值。本文采用非线性弹簧模拟远离断层处埋地管道的反应,基于管土之间小变形段管道处于强化阶段,提出一种改进的管土等效分析模型,进一步减小了管土之间大变形段的分析长度,从而提高了有限元分析效率。该模型采用ALA推荐的方法计算管土间的滑动摩擦力,可以考虑土体种类的影响;用Kennedy方法确定管道的计算长度。通过与精确模型比较,验证了管土等效模型的合理性和有效性。 The failure of buried pipelines was observed adjacent to active faults due to the movements of fault during earthquakes. The main failure modes include strength failure, local bucking, and integral destabilization. An accurate and efficient analysis model for a buried pipeline subjected to fault movements is of significance for seismic design of buried pipelines and safety evaluation after an earthquake. Lots of theoretical and numerical methods were developed to obtain the response of buried pipelines under fault movements. Especially, finite element method is employed to simulate pipe and soil interaction under fault movements. The assumption that only axial displacement shall take place for the part of the pipe with small deformation between pipeline and soil is proposed and proven by FE analysis in the paper. A nonlinear axial spring located on each end of the pipe is utilized to simulate the response of a buried pipeline far away from fault. Then, an updated pipe-soil equivalent model is used to decrease the analysis length of the part of the pipe with large deformation between pipeline and soil. The soil resistance per unit length of pipe is calculated with the recommendation method from the standard of American Lifelines Alliance. The effects of soil types, interaction between pipe and soil, and material nonlinearity of pipe steel are considered in the model. Kennedy method is introduced to obtain the calculating length of a pipeline. The results of the equivalent model proposed in the paper are compared with some models of a buried pipeline subjected to strike slip faults.
出处 《防灾减灾工程学报》 CSCD 2009年第1期44-50,共7页 Journal of Disaster Prevention and Mitigation Engineering
基金 国家自然科学基金重点项目(50419010) 教育部科学技术研究重大项目(305003)资助
关键词 埋地管道 断层作用 等效边界非线性弹簧 数值分析 buried pipeline fault movement equivalent boundary nonlinear spring numerical analysis
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参考文献12

  • 1Newmark N M, Hall W J. Pipeline design to resist large fault displacement[C]//Proceedings of US Con- ference on Earthquake Engineering, Ann Arbor Michigan: EERI, 1975. 151-159.
  • 2Kennedy R P, Chow A W, William R A. Fault movement effects on buried oil pipeline [J]. Journal of Transportation Engineering, ASCE, 1977, 103 (6) : 617-633.
  • 3Wang L R L, Yeh Y H. A refined seismic analysis and design of buried pipeline for fault movement[J]. Earthquake Engineering and Structural Dynamics, 1985, 13(1): 75-96.
  • 4Wang L R L, Wang L J. Buried pipelines in large fault movements[C] ff Lifeline Earthquake Engineering Proceedings of the Fourth U.S. Conference, San Francisco, California: ASCE, 1995. 152-159.
  • 5Wang L R L, Wang L J. Parametric study of buried pipelines due to large fault movements[C]//Proceedings of the Third China-Japan-US Trilateral Symposium on Lifeline Earthquake Engineering, Kobe: Kobe University, 1995. 165-172.
  • 6张素灵,许建东,曹华明,王春华.地震断层作用对地下输油(气)管道破坏的分析[J].地震地质,2001,23(3):432-438. 被引量:22
  • 7刘爱文,张素灵,胡聿贤,李小军.地震断层作用下埋地管线的反应分析[J].地震工程与工程振动,2002,22(2):22-27. 被引量:46
  • 8侯忠良 甘文水 肖五虎.加热输油管线地震反应分析[A].冶金工业部建筑研究总院编.地下管线抗震-计算方法与工程应用[C].北京: 冶金工业部出版社,1991..
  • 9Takada S, Liang J W, Li T Y. Shell model response of buried pipelines to large fault movements[J]. Journal of Structural Engineering, JSCE, 1998, (44): 1637-1646.
  • 10Takada S, Hassani N, Fukuda K. A new proposal for simple design of buried steel pipes crossing active faults[J]. Earthquake Engineering and Structural Dynamics, 2001, (30):1243-1257.

二级参考文献18

  • 1琼斯 张春艳(译).1988年1月22日在澳大利亚北部腾南特克里克附近的三次大的板内地震[J].国际地震动态,1990,3:21-25.
  • 2张素灵.地震断层作用下埋地管线反应分析方法的研究:学位论文[M].北京:中国地震局地球物理研究所,1999..
  • 3冯启民,高惠瑛.受沉陷作用埋地管道破坏判别方法[J].地震工程与工程振动,1997,17(2):59-66. 被引量:18
  • 4[1]N.M. Newmark and W.J. Hall,Pipelinedesign toresist large fault displacement [A].Proc. U.S. nat. conf. Earthquake Eng.[C]. 1975.
  • 5[2]R.P. Kennedy, A.W. Darrow and R.A. Williamson, 'Fault movement effects on buried oil pipeline [J]. Tansport. Eng. Joumal, ASCE 103, 1977,617-633.
  • 6[3]L.R.L. Wang and Y.H. Yeh, A refined seismic analysis and design of buried pipeline for fault movement [J]. EESD, 1985,13.
  • 7[4]L.R.L. Wang and Luo-jia Wang, Parametric study of buried pipelines due to large fault movements [A]. Proc. Third China-Japan-US Trilateral Symposium on Lifeline Earthquake Eng. [C]. 1998.
  • 8[5]Ramberg, W., and W.R. Osgood, Description of stress-strain curves by three parameters[R]. Technical Notes, National Advisory Committee for Aemnautics (NACA), 1943,902 .
  • 9[7]GuildeLines for the Seismic Design of Oil and Gas Pipelines System[S]. ASCE, 1984.
  • 10张素灵,学位论文,1999年

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