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A novel dynamic isogeometric reanalysis method and its application in closed-loop optimization problems

机译:动态等几何重分析的一种新方法及其在闭环优化问题中的应用

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In this study, a novel dynamic isogeometric reanalysis (DIGR) method based on the Newmark-beta method is suggested to improve the computational efficiency. The dynamic response of the modified structure can be efficiently predicted by using the DIGR method without solving the complete set of modified equilibrium equations of the modified structure. Compared with popular dynamic reanalysis methods, DIGR has higher accuracy and can solve more complex structures rather than simple truss or beam structures. Furthermore, the larger the scale of the problem is, the higher the efficiency of the proposed method will be. Benefiting from the introduction of the IGA, the geometric model and modifications can be accurately represented and transformed due to the smoothness of Non-Uniform Rational B-Splines (NURBS) basis functions. Thus, the IGR can easily integrate with closed-loop optimization, can significantly improve the efficiency and can shorten the design cycle of the product. Numerical examples are shown to validate the correctness and superiority of the DIGR. The accuracy and efficiency are verified by comparing the results obtained via complete analysis. (C) 2019 Elsevier B.V. All rights reserved.
机译:在这项研究中,提出了一种新的基于Newmark-beta方法的动态等距几何再分析(DIGR)方法,以提高计算效率。可以通过使用DIGR方法有效地预测修改后结构的动态响应,而无需求解修改后结构的完整修改后平衡方程组。与流行的动态再分析方法相比,DIGR具有更高的精度,并且可以解决更复杂的结构,而不是简单的桁架或梁结构。此外,问题的规模越大,提出的方法的效率越高。得益于IGA的引入,由于非均匀有理B样条(NURBS)基函数的平滑性,可以精确表示和转换几何模型和修改。因此,IGR可以轻松地与闭环优化集成,可以显着提高效率并可以缩短产品的设计周期。数值例子表明了DIGR的正确性和优越性。通过比较通过完整分析获得的结果,可以验证准确性和效率。 (C)2019 Elsevier B.V.保留所有权利。

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