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大型储罐顶部抗风圈设计方法对比和优化 被引量:1
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作者 倪恒 陈严飞 +1 位作者 马尚 董绍华 《油气田地面工程》 2022年第2期52-57,共6页
抗风圈对增强储罐的抗风能力具有重要意义,而现有大型储罐设计规范中顶部抗风圈尺寸设计方法过于保守。对比GB 50341和API 650规范中的顶部抗风圈设计方法,分析现有设计方法保守的原因,并建立实际尺寸储罐有限元模型,开展风致屈曲分析,... 抗风圈对增强储罐的抗风能力具有重要意义,而现有大型储罐设计规范中顶部抗风圈尺寸设计方法过于保守。对比GB 50341和API 650规范中的顶部抗风圈设计方法,分析现有设计方法保守的原因,并建立实际尺寸储罐有限元模型,开展风致屈曲分析,研究抗风圈的抗风特性,结果表明,比实际设计尺寸更小的抗风圈完全可以满足抗风设计要求。对GB 50341顶部抗风圈尺寸设计公式进行了优化,可为大型储罐抗风圈设计提供参考。 展开更多
关键词 大型储罐 顶部抗风圈 截面模量 有限元模型 屈曲分析
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Improved Particle Swarm Optimization for Solving Transient Nonlinear Inverse Heat Conduction Problem in Complex Structure 被引量:1
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作者 ZHOU Ling ZHANG Chunyun +2 位作者 BAI Yushuai LIU Kun CUI Miao 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI CSCD 2021年第5期816-828,共13页
Accurately solving transient nonlinear inverse heat conduction problems in complex structures is of great importance to provide key parameters for modeling coupled heat transfer process and the structure’s optimizati... Accurately solving transient nonlinear inverse heat conduction problems in complex structures is of great importance to provide key parameters for modeling coupled heat transfer process and the structure’s optimization design.The finite element method in ABAQUS is employed to solve the direct transient nonlinear heat conduction problem.Improved particle swarm optimization(PSO)method is developed and used to solve the transient nonlinear inverse problem.To investigate the inverse performances,some numerical tests are provided.Boundary conditions at inaccessible surfaces of a scramjet combustor with the regenerative cooling system are inversely identified.The results show that the new methodology can accurately and efficiently determine the boundary conditions in the scramjet combustor with the regenerative cooling system.By solving the transient nonlinear inverse problem,the improved particle swarm optimization for solving the transient nonlinear inverse heat conduction problem in a complex structure is verified. 展开更多
关键词 improved particle swarm optimization transient nonlinear heat conduction problem inverse identification finite element method complex structure
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