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Multi-scaled simulation of latticed frames considering bending collapse of pipes 被引量:7

Multi-scaled simulation of latticed frames considering bending collapse of pipes
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摘要 To consider the bending collapse of the pipes in the latticed frames, based on the multi-scale simulation, the collapsed parts of the pipe are meshed by the shell elements as micro-scaled models, and the other parts are meshed by beam elements macro-models. The incremental displacement constraint equations for the nodes on the section between the two models are established based on the plane section premise of classical beam theory. The method to introduce the constraint equations is derived based on the Updated Largrangian method. The location of the micro-model is predicted by the stress field of the beam element, and the length of the collapsed part is adjusted by the plastic energy in the micro model. Several examples are included to illustrate the efficiency and accuracy of this method. To consider the bending collapse of the pipes in the latticed frames, based on the multi-scale simulation, the collapsed parts of the pipe are meshed by the shell elements as micro-scaled models, and the other parts are meshed by beam elements macro-models. The incremental displacement constraint equations for the nodes on the section between the two models are established based on the plane section premise of classical beam theory. The method to introduce the constraint equations is derived based on the Updated Largrangian method. The location of the micro-model is predicted by the stress field of the beam element, and the length of the collapsed part is adjusted by the plastic energy in the micro model. Several examples are included to illustrate the efficiency and accuracy of this method.
出处 《Journal of Chongqing University》 CAS 2012年第4期167-176,共10页 重庆大学学报(英文版)
基金 Funded by the Key Science and Technology Project of State Grid Corporation of China under Grant No.GC-10-1006
关键词 multi-scaled simulation latticed frames bending collapse plane section premise 英文摘要 编辑工作 学术论文 期刊
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参考文献14

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二级参考文献32

共引文献173

同被引文献51

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