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Effects of parameterization and knot placement techniques on primal and mixed isogeometric collocation formulations of spatial shear-deformable beams with varying curvature and torsion

机译:参数化和结放置技术对不同曲率和扭转的空间剪切变形梁的原始和混合异构耦合配方

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We present a displacement-based and a mixed isogeometric collocation (IGA-C) formulation for free-form, three-dimensional, shear-deformable beams with high and rapidly-varying curvature and torsion. When such complex shapes are concerned, the approach used to build the IGA geometric model becomes relevant. Although IGA-C has been so far successfully applied to a wide range of problems, the effects that different parameterization and knot placement techniques may have on the accuracy of collocation-based formulations is still an unexplored field. To fill this gap, primal and mixed formulations are used combining two parameterization methods (chord-length and equally spaced) with two knot placement techniques (uniformly spaced and De Boor). With respect to the space-varying Frenet local frame, we derive the strong form of the governing equations in a compact form through the definition of two matrix operators conveniently used to perform first and second order derivatives of the vector fields involved in the formulations. This approach is very efficient and easy to implement within a collocation-based scheme. Several challenging numerical experiments allow to test the different considered parameterizations and knot placement techniques, revealing in particular that with the primal formulation an equally spaced parameterization is definitively the most recommended choice and it should always be used with an approximation degree of, at least, p = 6, although some caution must be adopted when very high Jacobians and small curvatures occur. The same holds for the mixed formulation, with the difference that p = 4 is enough to yield accurate results. (C) 2020 Elsevier Ltd. All rights reserved.
机译:我们提出了一种基于位移的和混合的异诊断(IgA-C)配方,其具有高且快速变化的曲率和扭转的自由形式的三维剪切可变形梁。当涉及这样的复杂形状时,用于构建IGA几何模型的方法变得相关。虽然IGA-C已成功应用于广泛的问题,但是不同参数化和结放置技术的影响可能对基于掩盖的制剂的准确性仍然是一个未开发的场。为了填充这种间隙,使用了基于两个参数化方法(弦长和等间隔)的原始和混合配方,其中两个结放置技术(均匀间隔和de Boor)。关于空间变化的FreneT局部帧,我们通过三种矩阵操作员的定义来实现紧凑的形式的控制方程的强度形式,方便地用于执行制剂中涉及的矢量场的第一和二阶衍生物。这种方法在基于搭配的方案中非常有效且易于实现。几个具有挑战性的数值实验允许测试不同考虑的参数化和结放置技术,特别是在原始制剂中露出相等间隔的参数化绝对是最推荐的选择,并且应该始终使用至少p的近似度。 = 6,虽然必须在非常高的雅各比人和小曲率发生时采用一些小心。对于混合制剂相同的保持,差异是p = 4足以产生准确的结果。 (c)2020 elestvier有限公司保留所有权利。

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