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首页> 外文期刊>Computational Mechanics: Solids, Fluids, Fracture Transport Phenomena and Variational Methods >Numerical-performance studies for the stabilized space-time computation of wind-turbine rotor aerodynamics
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Numerical-performance studies for the stabilized space-time computation of wind-turbine rotor aerodynamics

机译:风力机转子空气动力学稳定时空计算的数值性能研究

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摘要

We present our numerical-performance studies for 3D wind-turbine rotor aerodynamics computation with the deforming-spatial-domain/stabilized space-time (DSD/SST) formulation. The computation is challenging because of the large Reynolds numbers and rotating turbulent flows, and computing the correct torque requires an accurate and meticulous numerical approach. As the test case, we use the NREL 5MW offshore baseline wind-turbine rotor. We compute the problem with both the original version of the DSD/SST formulation and the version with an advanced turbulence model. The DSD/SST formulation with the turbulence model is a recently-introduced space-time version of the residual-based variational multiscale method. We include in our comparison as reference solution the results obtained with the residual-based variational multiscale Arbitrary Lagrangian-Eulerian method using NURBS for spatial discretization. We test different levels of mesh refinement and different definitions for the stabilization parameter embedded in the "least squares on incompressibility constraint" stabilization. We compare the torque values obtained.
机译:我们用变形空间域/稳定时空(DSD / SST)公式介绍了3D风力涡轮机转子空气动力学计算的数值性能研究。由于大的雷诺数和旋转的湍流,因此计算具有挑战性,并且计算正确的扭矩需要准确而细致的数值方法。作为测试案例,我们使用NREL 5MW海上基准风力涡轮机转子。我们使用DSD / SST公式的原始版本和具有高级湍流模型的版本来计算问题。带有湍流模型的DSD / SST公式是基于残差的变分多尺度方法的最新引入的时空版本。在比较中,我们将使用基于NURBS进行空间离散化的基于残差的变分多尺度任意Lagrangian-Eulerian方法获得的结果作为参考解决方案。我们测试了不同级别的网格细化和嵌入在“不可压缩约束的最小二乘”稳定中的稳定参数的不同定义。我们比较获得的扭矩值。

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