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首页> 外文期刊>Computational Methods in Civil Engineering >Axial buckling analysis of an isotropic cylindrical shell using the Meshless Local Petrov-Galerkin method
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Axial buckling analysis of an isotropic cylindrical shell using the Meshless Local Petrov-Galerkin method

机译:使用无网格局部Petrov-Galerkin方法的各向同性圆柱壳的轴向屈曲分析

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In this paper the meshless local Petrov-Galerkin (MLPG) method is implemented to study the buckling of isotropic cylindrical shells under axial load. Displacement field equations, based on Donnell and first order shear deformation theory, are taken into consideration. The set of governing equations of motion are numerically solved by the MLPG method in which according to a semi-inverse method, a new variational trial-functional is constructed to derive the stiffness matrices and critical buckling loads are obtained in various boundary conditions. The moving least squares interpolation is employed to construct both trial and test functions. The present method is a truly meshless method based on a number of randomly located nodes upon which no global background integration mesh is needed and no element matrix assembly is required. In the present MLPG formulation, a local variational form is constructed over a local sub-domain instead of using the conventional weighted-residual procedure. The influences of some commonly used boundary conditions and effects of shell geometrical parameters are studied. The results show the convergence characteristics and accuracy of the mentioned method.tio
机译:本文采用无网格局部Petrov-Galerkin(MLPG)方法研究各向同性圆柱壳在轴向载荷下的屈曲。考虑了基于Donnell和一阶剪切变形理论的位移场方程。通过MLPG方法对一组运动控制方程进行数值求解,其中,根据半反方法,构造了新的变分试验函数来推导刚度矩阵,并在各种边界条件下获得了临界屈曲载荷。移动最小二乘插值用于构造试验和测试功能。本方法是基于许多随机定位的节点的真正的无网格方法,在该节点上不需要全局背景集成网格并且不需要元素矩阵组件。在当前的MLPG公式中,在局部子域上构造局部变体形式,而不是使用常规的加权残差程序。研究了一些常用边界条件的影响以及壳几何参数的影响。结果表明了该方法的收敛性和准确性。

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