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A finite volume method for solid mechanics incorporating rotational degrees of freedom

机译:结合旋转自由度的固体力学有限体积方法

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A novel finite volume (FV) based discretization method for determining displacement, strain and stress distributions in loaded two dimensional structures with complex geometries is presented. The method incorporates rotation variables in addition to the displacement degrees of freedom employed in earlier FV based structural analysis procedures and conventional displacement based finite element (FE) formulations. The method is used to predict the displacement fields in a number of test cases for which solutions are already available. The effect of mesh refinement upon the accuracy of the solutions predicted by the method is assessed. The results of this assessment indicate that the new method is more accurate than previous FV procedures incorporating displacement variables only, particularly in cases where bending is the predominant mode of deformation, and therefore the new method represents a significant advance in the development of this type of discretization procedure. Interestingly, the results of the accuracy assessment exercise also indicate that the new FV procedure is also more accurate than the equivalent FE formulation incorporating displacement and rotational degrees of freedom.
机译:提出了一种基于有限体积(FV)的离散化方法,用于确定几何形状复杂的二维结构中的位移,应变和应力分布。除了在早期基于FV的结构分析程序和传统的基于位移的有限元(FE)公式中采用的位移自由度之外,该方法还包含旋转变量。该方法用于预测许多已经有解决方案的测试案例中的位移场。评估了网格细化对通过该方法预测的解的准确性的影响。评估结果表明,新方法比仅包含位移变量的以前FV过程更准确,特别是在弯曲是变形的主要方式的情况下,因此,新方法代表了此类方法的发展的重大进步。离散化程序。有趣的是,准确性评估练习的结果还表明,新的FV程序也比包含位移和旋转自由度的等效FE公式更准确。

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