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Multiresolution Finite Element Method Based on a New Locking-Free Rectangular Mindlin Plate Element

机译:基于新型无锁矩形Mindlin板单元的多分辨率有限元方法

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A locking-free rectangular Mindlin plate element with a new multi-resolution analysis (MRA) is proposed and a new finite element method is hence presented. The MRA framework is formulated out of a mutually nesting displacement subspace sequence whose basis functions are constructed of scaling and shifting on the element domain of basic full node shape function. The basic full node shape function is constructed by extending the split node shape function of a traditional Mindlin plate element to other three quadrants around the coordinate zero point. As a result, a new rational MRA concept together with the resolution level (RL) is constituted for the element. The traditional 4-node rectangular Mindlin plate element and method is a mono-resolution one and also a special case of the proposed element and method. The meshing for the monoresolution plate element model is based on the empiricism while the RL adjusting for the multiresolution is laid on the rigorous mathematical basis. The analysis clarity of a plate structure is actually determined by the RL, not by the mesh. Thus, the accuracy of a plate structural analysis is replaced by the clarity, the irrational MRA by the rational and the mesh model by the RL that is the discretized model by the integrated.
机译:提出了一种具有新的多分辨率分析(MRA)的无锁定矩形Mindlin板单元,并因此提出了一种新的有限元方法。 MRA框架由相互嵌套的位移子空间序列构成,其基本功能是在基本全节点形状函数的元素域上按比例缩放和平移来构造的。基本的全节点形状函数是通过将传统Mindlin板单元的分裂节点形状函数扩展到坐标零点周围的其他三个象限来构造的。结果,为该元素构成了新的合理的MRA概念以及分辨率级别(RL)。传统的4节点矩形Mindlin板元件和方法是单分辨率的,也是所提出元件和方法的特例。单分辨率板元模型的网格划分基于经验,而针对多分辨率的RL调整则基于严格的数学基础。板结构的分析清晰度实际上是由RL确定的,而不是由网格确定的。因此,用清晰度代替板结构分析的准确性,用有理数代替不合理的MRA,用RL将网格模型替换为RL,而RL是集成的离散模型。

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