Analysis of axisymmetric hollow cylinder under surface loading using variational principle

Ajinkya V Sirsat, S. Padhee
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Abstract

In this work, a variational principle–based approach has been adopted to analyze one of the classical linear elasticity problem of the axisymmetric cylinder under surface loading. The use of variational principle results in a set of governing partial differential equations with associated boundary conditions. The equations have been solved using the separation of variable approach and the Frobenius method. A general solution has been derived and used to solve two test cases. The proposed solution is capable of meeting all the boundary conditions. The solution has been validated by comparing it with a finite element–based numerical solution and considering a special limiting condition of a solid cylinder, for which results are available in the literature. Further various studies have been carried out to understand the robustness and limitation of the presented solution.
利用变分原理分析表面荷载下的轴对称空心圆柱体
本研究采用基于变分原理的方法,分析了轴对称圆柱体在表面载荷作用下的一个经典线性弹性问题。变分原理的使用产生了一组具有相关边界条件的支配偏微分方程。方程的求解采用了变量分离法和弗罗贝尼斯法。得出了一个通用解决方案,并用于解决两个测试案例。所提出的解决方案能够满足所有边界条件。通过与基于有限元的数值解法进行比较,并考虑实心圆柱体的特殊限制条件,对该解法进行了验证。此外,还进行了各种研究,以了解所提出解决方案的稳健性和局限性。
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