Comparative study of algorithms to handle geometric and material nonlinearities

Q4 Engineering
S. Mulay, R. Udhayaraman, M. Anas
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引用次数: 1

Abstract

It is critical to handle geometric and material nonlinearities in a stable manner while solving the problems from solid mechanics, such that it results in a converged solution. The present work compares the suitability of generalised displacement control (GDC) and displacement control algorithms (DCA) by solving several 1D and 2D formulations. The ability of these algorithms to handle homogeneous and inhomogeneous deformations is also studied. A novel direct displacement control method (DDCM), coupled with Newton-Raphson method, is proposed and compared with GDC and DCA approaches. Appropriate conclusions are finally drawn based on the successful demonstrations of the numerical results obtained by GDC, DCA and DDCM approaches.
处理几何非线性和材料非线性算法的比较研究
在解决固体力学问题时,以稳定的方式处理几何和材料的非线性是至关重要的,这样才能得到收敛的解。本工作通过求解几个1D和2D公式,比较了广义位移控制(GDC)和位移控制算法(DCA)的适用性。还研究了这些算法处理均匀和非均匀变形的能力。提出了一种新的直接位移控制方法(DDCM),结合Newton-Raphson方法,并与GDC和DCA方法进行了比较。最后,通过对GDC、DCA和DDCM方法数值结果的成功验证,得出了相应的结论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
0.40
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