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首页> 外文期刊>Advances in Mechanical Engineering >An improved interval finite element method based on the element-by-element technique for large truss system and plane problems:
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An improved interval finite element method based on the element-by-element technique for large truss system and plane problems:

机译:基于逐个元素技术的大型桁架系统和平面问题的区间有限元改进方法:

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The interval finite element method based on the element-by-element technique is proved to be a rigorous and efficient method for considering interval uncertainties. The structural internal force of the same accuracy as the interval response displacement can be obtained by combining the variational method and the Lagrange multiplier method. However, the increase of the Lagrange multiplier reduces the efficiency of solving the equation, especially for a large truss system. In addition, the method is mostly used to analyse truss system, and the applications in plane problems are still rare. In this article, an improved method involving modification of the Lagrange multiplier interval equations is proposed to calculate interval displacements and interval internal forces at the same time. In this proposed method, the increase of the unknown Lagrange interval does not affect the solution of the equations. For plane problems, a new method for solving the stress interval of the element is proposed. This proposed ...
机译:事实证明,基于逐元素技术的区间有限元方法是一种考虑区间不确定性的严格有效的方法。通过组合变分法和拉格朗日乘数法,可以获得与间隔响应位移相同精度的结构内力。但是,拉格朗日乘数的增加会降低求解方程的效率,尤其是对于大型桁架系统而言。另外,该方法主要用于分析桁架系统,在平面问题中的应用仍然很少。本文提出了一种改进的方法,该方法包括修改拉格朗日乘数间隔方程,以同时计算间隔位移和间隔内力。在此提出的方法中,未知拉格朗日间隔的增加不会影响方程的解。针对平面问题,提出了一种求解单元应力区间的新方法。这个提议...

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