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SYMMETRIC AND NON-SYMMETRIC FORMULATIONS FOR FLUID-STRUCTURE INTERACTION PROBLEMS: REFERENCE TEST CASES FOR NUMERICAL DEVELOPMENTS IN A COMMERCIAL FINITE ELEMENT CODE

机译:用于流体结构相互作用问题的对称和非对称制剂:商业有限元代码中数值发展的参考测试用例

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The present paper deals with numerical analysis of fluid-structure interaction problems with commercial finite element codes. The various fluid-structure formulations are today well known from a theoretical point of view, but their application to the dynamic analysis of industrial problems with spectral methods can not be performed with all available codes. The present study exposes a developing process currently undertaken in order to integrate symmetric FSI formulation within the commercial finite element code Ansys. This process is carried out in several steps which are detailed here: first, on overview of the existing fluid-structure formulations is exposed with the view to comparing various finite element codes. Then, coupled symmetric and non-symmetric formulations are recalled on two general FSI problems (elasto-acoustic and hydro-elastic problems) and applied on a generic reference test case. Numerical integration of the presented methods is performed on the Ansys code in the following direction: free surface condition for sloshing mode in pressure formulation, harmonic axi-symmetric pressure fluid formulation for coupled axi-symmetric calculations, general symmetric coupled formulation in u,p,Φ (for elasto-acoustic problems with fluid free surface without sloshing) and u,p,η (hydro-elastic problems with fluid free surface with sloshing) formulations. Elementary validations of the implemented methods are proposed by comparing Ansys numerical results to calculations results obtained with a finite element code developed by DCN Propulsion, and presented in the paper. All the developments will be available in future release of the Ansys code in the coming years for the benefit of the Ansys users' community.
机译:本文涉及商业有限元码流体结构相互作用问题的数值分析。从理论的角度来看,各种流体结构配方众所周知,但它们在所有可用的代码中不能进行频谱方法的工业问题的动态分析。目前的研究公开了目前开发的发展过程,以便在商业有限元代码ANSYS中集成对称FSI制剂。该方法在此处详述的几个步骤中进行:首先,在现有的流体结构配方上以比较各种有限元码的视图暴露。然后,在两个一般的FSI问题(弹性声和水力弹性问题)上召回了耦合对称和非对称制剂,并在通用参考测试用例上应用。在以下方向上对ANSYS代码进行了数值积分:在压力配方中的晃动模式的自由表面条件,谐波轴对称压力流体制剂用于耦合的轴对称计算,u,p一般对称耦合配方,p, φ(对于没有晃动的无流体表面的弹性声学问题)和U,P,η(用晃动的流体自由表面的水力弹性问题)制剂。通过将ANSYS数值结果与由DCN推进器开发的有限元代码进行比较,提出了实施方法的基本验证,提出了通过DCN推进的有限元码,并呈现论文。所有的发展都将在未来几年的ansys代码中发布的所有开发,以获得ANSYS用户的社区的利益。

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