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Solution of the axisymmetric problem of thermoelasticity of a radially inhomogeneous cylindrical shell by numerical-analytical method and the finite element method

机译:用数值分析方法和有限元法,径向不均匀圆柱壳热弹性轴对称问题的解

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摘要

The aim of research is to compare two calculation methods using the example of solving the axisymmetric thermoelasticity problem. Methods. The calculation of a thick-walled cylindrical shell on the temperature effect was carried out by the numerical-analytical method and the finite element method, implemented in the LIRA-CAD software package. The shell consists of three layers: two layers of heat-resistant concrete and an outer steel layer. In the calculation, a piecewise linear inhomogeneity of the shell due to its three-layer structure and continuous inhomogeneity caused by the influence of a stationary temperature field is taken into account. The numerical-analytical method of calculation involves the derivation of a resolving differential equation, which is solved by the sweep method, it is possible to take into account the nonlinear nature of the deformation of the material using the method of successive approximations. To solve this problem by the finite element method, a similar computational model of the shell was constructed in the LIRA-CAD software package. The solution of the problem of thermoelasticity for an infinite cylinder (under conditions of a plane deformed state) and for a cylinder of finite length with free ends is given. Results . Comparison of the calculation results is carried out according to the obtained values of ring stresses σθ.
机译:研究的目的是使用求解轴对称热弹性问题的示例进行比较两个计算方法。方法。通过在Lira-CAD软件包中实现的数值分析方法和有限元方法进行了厚壁圆柱形壳的计算。壳体由三层组成:两层耐热混凝土和外钢层。在计算中,考虑了由其三层结构和由静止温度场影响引起的连续不均匀性引起的壳体的分段线性不均匀性。计算的数值分析方法涉及通过扫描方法解决的分辨微分方程的推导,可以考虑使用连续近似的方法的材料变形的非线性性质。为了通过有限元方法解决这个问题,在Lira-CAD软件包中构建了类似的Shell的计算模型。给出了无限圆柱体的热弹性问题的解决方案(在平面变形状态的条件下)和用于具有自由端的有限长度的圆柱体。结果 。计算结果的比较根据所得环应力σθ的值进行。

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