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A new arc-length control method based on the rates of the internal and the dissipated energy

机译:一种基于内部和耗散能量的新的弧长控制方法

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摘要

Purpose - The purpose of this paper is to introduce a new arc-length control method for physically non-linear problems based on the rates of the internal and the dissipated energy. Design/methodology/approach - In this paper, the authors derive from the second law of thermodynamics the arc-length method based on the rate of the dissipated energy and from the time derivative of the energy density the arc-length method based on the rate of the internal energy. Findings - The method requires only two parameters and can automatically trace equilibrium paths which display multiple snap-through and/or snap-back phenomena. Originality/value - A fully energy-based control procedure is developed, which facilitates switching between dissipative and non-dissipative arc-length control equations in a natural way. The method is applied to a plate with an eccentric hole using the phase field model for brittle fracture and to a perforated beam using interface elements with decohesion.
机译:目的-本文的目的是介绍一种基于内部能量和耗散能量的比率的,用于解决物理非线性问题的新弧长控制方法。设计/方法/方法-在本文中,作者从热力学第二定律推导出基于耗散能量速率的弧长方法,并从能量密度的时间导数推导基于速率的弧长方法内部能量。结果-该方法仅需要两个参数,并且可以自动跟踪显示多个快速捕捉和/或快速捕捉现象的平衡路径。原创性/价值-开发了一种基于能量的完全控制程序,该程序便于以自然方式在耗散和非耗散电弧长度控制方程之间进行切换。该方法适用于使用脆性断裂的相场模型的带有偏心孔的板,以及使用具有解粘力的界面元件应用于穿孔梁。

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