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Efficient isogeometric NURBS-based solid-shell elements: Mixed formulation and B-method

机译:基于NURBS的高效等几何固体单元元素:混合配方和B方法

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In this work, solid-shell NURBS elements are developed in order to address static problems of slender structures under small perturbations. A single layer of elements is considered through the thickness of the shell, and the degree of approximation in that direction is chosen to be equal to two. A full 3D constitutive relation is assumed. The objective is to obtain highly accurate low-degree elements to be used in coarse meshes. In order to do that, we propose a mixed method from which we derive a B-projection to deal with locking. The main idea is to modify the interpolation of the average stresses and strains through the thickness. More precisely, we develop two finite elements. The first element, which is based on the mixed method or, equivalently, on the B-projection, is extremely accurate, but leads to a fully-populated global stiffness matrix. To improve the efficiency, the second element uses a local least-squares-type procedure to define a new B-projection, leading to a sparse global stiffness matrix. The quality and efficiency of the methods are assessed through several usual test cases and by comparison with other published techniques.
机译:在这项工作中,开发了坚固的NURBS单元以解决细长结构在小扰动下的静态问题。通过壳的厚度考虑元素的单层,并选择该方向上的近似度等于2。假定完整的3D本构关系。目的是获得要在粗网格中使用的高精度低度元素。为了做到这一点,我们提出了一种混合方法,从中可以得出一个B投影来处理锁定。主要思想是修改贯穿厚度的平均应力和应变的插值。更确切地说,我们开发两个有限元。基于混合方法或等效地基于B投影的第一个元素非常精确,但是会导致填充完整的整体刚度矩阵。为了提高效率,第二个元素使用局部最小二乘法来定义新的B投影,从而导致稀疏的整体刚度矩阵。通过几个常用的测试案例并与其他已发布的技术进行比较,评估了这些方法的质量和效率。

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