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Proposal of Maglev Guideway Girder by Structural Optimization: Civil Works of Center for Urban Maglev Program in Korea

机译:结构优化的磁悬浮导轨梁的建议:韩国城市磁悬浮计划中心的土建工程

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摘要

An optimized maglev guideway girder system which fulfills the requirements of Center for Urban Maglev Program in Korea is proposed. The design of optimized guideway girder should satisfy the design criteria regarding load conditions (vehicle load and dead load) and deflection conditions due to moving vehicle load. The design criteria have deflection regulation on live load and concrete strength condition on top and bottom ends of the girder. To satisfy these conditions, we define various design variables (DV), state variables (SV) and object function (OBJ) followed by structural optimization process leading to the dimension of the cross section of the guideway girder. General purpose finite element analysis program ANSYS was utilized to perform structural optimization and 3D analysis to check the design criteria. Accordingly proposed maglev guideway girder is compared with the guideway girder systems of the commercial and experimental routes economically and indirectly.
机译:提出了一种满足韩国城市磁悬浮计划中心要求的优化磁悬浮导轨梁系统。优化的导轨箱梁的设计应满足有关载荷条件(车辆载荷和静载荷)和由于移动车辆载荷引起的挠曲条件的设计标准。设计标准对梁的上下两端的活荷载和混凝土强度条件有挠度规定。为了满足这些条件,我们定义了各种设计变量(DV),状态变量(SV)和目标函数(OBJ),然后进行结构优化处理,以得出导轨大梁横截面的尺寸。利用通用有限元分析程序ANSYS进行结构优化和3D分析,以检查设计标准。因此,将所建议的磁悬浮导轨梁与商业和实验路线的导轨梁系统进行了经济,间接的比较。

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  • 来源
  • 会议地点 Seoul(KR);Seoul(KR)
  • 作者单位

    College of Power Engineering,University of Shanghai for Science Technology,Shanghai 200093,P.R.China;

    rnCollege of Power Engineering,University of Shanghai for Science Technology,Shanghai 200093,P.R.China;

    rnCollege of Power Engineering,University of Shanghai for Science Technology,Shanghai 200093,P.R.China;

    rnShanghai Institute of Technical Physics,Chinese Academy of Sciences,Shanghai 200083,P.R.China;

    rnShanghai Institute of Technical Physics,Chinese Academy of Sciences,Shanghai 200083,P.R.China;

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  • 原文格式 PDF
  • 正文语种
  • 中图分类 发电机、大型发电机组(总论);
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