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Coupling of a nonlinear finite element structural method with a Navier-Stokes solver

机译:非线性有限元结构方法与Navier-Stokes求解器的耦合

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A new three-dimensional viscous aeroelastic solver is developed in the present work. A well validated full Navier-Stokes code is coupled with a nonlinear finite element plate model. Implicit coupling between the computational fluid dynamics and structural solvers is achieved using a subiteration approach. Computations of several benchmark static and dynamic plate problems are used to validate the finite element portion of the code. This coupled aeroelastic scheme is then applied to the problem of three-dimensional panel flutter. Inviscid and viscous supersonic results match previous computations using the same aerodynamic method coupled with a finite difference structural solver. For the case of subsonic flow, multiple solutions consisting of static, upward and downward deflections of the panel are discussed. The particular solution obtained is shown to be sensitive to the cavity pressure specified underneath the panel.
机译:在当前的工作中开发了一种新的三维粘性气动弹性求解器。经过充分验证的完整Navier-Stokes代码与非线性有限元板模型耦合。使用子迭代方法可以实现计算流体动力学和结构求解器之间的隐式耦合。几个基准静态和动态板问题的计算被用来验证代码的有限元部分。然后将这种耦合的空气弹性方案应用于三维面板颤振问题。使用相同的空气动力学方法和有限差分结构求解器的无粘性和粘性超声结果与以前的计算结果匹配。对于亚音速流,讨论了由面板的静态,向上和向下偏转组成的多种解决方案。所获得的特定解决方案显示出对面板下方规定的型腔压力敏感。

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