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Aerodynamic Simulations of a High-Lift configuration by Lattice Boltzmann Method with Block-Structured Cartesian Grid

机译:块结构笛卡尔网格的格子Boltzmann方法对高升空构型的空气动力学模拟

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In this paper, we propose a computational approach based on Lattice Boltzmann Method (LBM) and apply it to the aerodynamic/aeroacoustic simulations around a high-lift configuration. In our approach, we couple LBM and Building-Cube Method (BCM), which is the framework of a block-structured Cartesian grid approach proposed by Nakahashi, to enhance the parallel efficiency and keep the simplicity of source code. To overcome the stability problem due to the treatment of collision operator in standard LBGK model, cascaded-LBM is used. The proposed method is applied to the aerodynamic/aeroacoustic simulation around 30p30n high-lift device configuration which is one of the benchmark problem of AIAA BANC workshop and Aerodynamics Prediction Challenge Ⅳ (APC-Ⅳ) in Japan. The resulted aerodynamic forces and near field acoustic data are compared with the experimental data and computational results by other researchers to show the current capability of present approach.
机译:在本文中,我们提出了一种基于莱迪思玻尔兹曼方法(LBM)的计算方法,并将其应用于围绕高升力配置的空气动力学/空气声学模拟。在我们的方法中,我们将LBM和Building-Cube方法(BCM)结合在一起,这是Nakahashi提出的块结构笛卡尔网格方法的框架,以提高并行效率并保持源代码的简单性。为了克服由于在标准LBGK模型中处理碰撞算子而导致的稳定性问题,使用了级联LBM。该方法被应用到30p30n高升力装置配置周围的空气动力学/空气声仿真中,这是AIAA BANC研讨会的基准问题之一,也是日本空气动力学预测挑战四(APC-Ⅳ)。将产生的空气动力和近场声波数据与其他研究人员的实验数据和计算结果进行比较,以显示当前方法的能力。

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