锅炉炉胆屈曲的有限元分析任务书

 2022-05-11 20:29:02

1. 毕业设计(论文)的内容、要求、设计方案、规划等

学生结合生产单位、管理部门或指导教师的科研课题,进行试验、调查研究,或广泛收集资料进行深入分析论证,在经过总结分析得出结论后,独立撰写并答辩。

总的毕业设计的时间为16周。

1. 了解有限元法的基本理论、基本方法2. 掌握有限元软件ANSYS的特点、使用方法、描述语言及分析过程。

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2. 参考文献(不低于12篇)

1) 胡仁喜, 徐东升, 李亚东等编著.ANSYS13.0机械与结构有限元分析从入门到精通.第2版机械工业出版社.20112) 张红松, 胡仁喜, 康士廷等编著.ANSYS 13.0有限元分析从入门到精通.第2版 机械工业出版社.2011 3) B.G. Falzon, A. Faggiani. The use of a genetic algorithm to improve the postbuckling strength of stiffened composite panels susceptible to secondary instabilities[J], Composite Structures 94 (2012) 8838954) Eirik Byklum_, Eivind Steen, Jogen Amdahl. A semi-analytical model for global buckling and postbuckling analysis of stiffened panels[J]. Thin-Walled Structures 42 (2004) 7017175) 王元华,陈明亚,史永红等. 废热锅炉下管箱与其内衬刚玉变形协调分析及优化[J].压力容器.27(4),2010,16-206) 朱柳娟,蔡文忠. 管壳式废热锅炉整体强度的有限元分析[J].工业锅炉, 2009,1.19-227) 赵国庆,张倩影. 增压锅炉汽包应力的有限元分析[J].应用能源技术. 2010,11,20-148) 王立双,李大生. 锅炉钢结构节点板的计算[J].锅炉制造.2002,3,29-319) J. Purbolaksono, A. Khinani, A.A. Ali, A.Z. Rashid, N.F. Nordin. Iterative technique and finite element simulation for supplemental condition monitoring of water-tube boiler[J].Simulation Modelling Practice and Theory, 17( 5), 2009, 897-91010) Jukka Yrjl, Janne Paavilainen, Heikki Oravainen. Modelling of the finned convection section of a biomass boiler[J].Energy Conversion and Management, 47(1516), 2006, 2552-256311) M.J. Stevens, R.J. Dennis, I.J.M. Bottomley, R.A.W. Bradford. Modelling the manufacturing history, through life creep-fatigue damage and limiting defect sizes of a pipework joint using finite element based methods[J].International Journal of Pressure Vessels and Piping, 108109,2013, 13-2712) Fei Tang, Camden R. Hubbard, Gorti Sarma, James Keiser .Residual strain distribution in bent composite boiler tubes [J].Materials Science and Engineering: A, Volume 437, Issue 1, 10 November 2006, Pages 83-8713) Zheng Shu, Luo Zixue, Deng Yanxiang, Zhou Huaichun. Development of a distributed-parameter model for the evaporation system in a supercritical W-shaped boiler[J].Applied Thermal Engineering, 62(1), 2014, 123-13214) K. Zarrabi, A. Basu. A finite volume element formulation for solution of elastic axisymmetric pressurized components[J].International Journal of Pressure Vessels and Piping, 77( 8), 2000, 479-48415) A. Choubey, D.K. Sehgal, N. Tandon. Finite element analysis of vessels to study changes in natural frequencies due to cracks[J].International Journal of Pressure Vessels and Piping, 83(3), 2006, 181-187

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