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首页> 外文期刊>Computational Mechanics: Solids, Fluids, Fracture Transport Phenomena and Variational Methods >A cut finite element method for the solution of the full-potential equation with an embedded wake
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A cut finite element method for the solution of the full-potential equation with an embedded wake

机译:一种嵌入式尾迹解决全势方程的剪切有限元方法

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Potential flow solvers represent an appealing alternative for the simulation of non-viscous subsonic flows. In order to deliver accurate results, such techniques require prescribing explicitly the so called Kutta condition, as well as adding a special treatment on the wake of the body. The wake is traditionally modelled by introducing a gap in the CFD mesh, which requires an often laborious meshing work. The novelty of the proposed work is to embed the wake within the CFD domain. The approach has obvious advantages in the context of aeroelastic optimization, where the position of the wake may change due to evolutionary steps of the geometry. This work presents a simple, yet effective, method for the imposition of the embedded wake boundary condition. The presented method preserves the possibility of employing iterative techniques in the solution of the linear problems which stem out of the discretization. Validation and verification of the solver are performed for a NACA 0012 airfoil.
机译:潜在的流量求解器代表了模拟非粘性子流量的吸引力替代方案。 为了提供准确的结果,这些技术要求明确规定所谓的Kutta病症,以及在身体的尾迹中添加特殊处理。 唤醒传统上通过在CFD网格中引入间隙来建模,这需要经常费力的啮合工作。 拟议的工作的新颖性是嵌入CFD域内的唤醒。 该方法在空气弹性优化的背景下具有明显的优势,其中唤醒的位置可能由于几何形状的进化步骤而变化。 这项工作提出了一种简单但有效的方法,用于施加嵌入式唤醒边界条件。 所提出的方法保留在源于离散化的线性问题的溶液中采用迭代技术的可能性。 对Naca 0012翼型进行求解和验证求解。

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