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Nonlinear analysis of thin shallow arches subject to snap-through using truss models

机译:桁架模型对浅埋浅拱拱的非线性分析

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In this study a truss model is used for the geometrically nonlinear static and dynamic analysis of a thin shallow arch subject to snap-through. Thanks to the very simple geometry of a truss, the equilibrium conditions can be easily written and the global stiffness matrix can be easily updated with respect to the deformed structure, within each step of the analysis. A very coarse discretization is applied; so, in a very simple way, the high frequency modes are suppressed from the beginning and there is no need to develop a complicated reduced-order technique. Two short computer programs have been developed for the geometrically nonlinear static analysis by displacement control of a plane truss model of a structure as well as for its dynamic analysis by the step-by-step time integration algorithm of trapezoidal rule, combined with a predictor-corrector technique. These two short, fully documented computer programs are applied on the geometrically nonlinear static and dynamic analysis of a specific thin shallow arch subject to snap-through.
机译:在本研究中,使用桁架模型对受卡扣影响的薄壁浅拱进行几何非线性静态和动态分析。得益于非常简单的桁架几何形状,可以在分析的每个步骤中轻松编写平衡条件,并可以轻松地针对变形结构更新整体刚度矩阵。应用了非常粗糙的离散化;因此,以一种非常简单的方式,从一开始就抑制了高频模式,因此无需开发复杂的降阶技术。已经开发了两个简短的计算机程序,用于通过结构的平面桁架模型的位移控制进行几何非线性静态分析,以及通过使用梯形规则的逐步时间积分算法(结合预测器)进行动态分析。校正器技术。这两个简短且完整记录的计算机程序被应用到特定的薄浅拱门的几何非线性静态和动态分析中,这些拱门容易被卡住。

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