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Aerodynamic optimization using building cube method and data mining with proper orthogonal decomposition

机译:使用建筑立方体方法进行空气动力学优化和具有适当正交分解的数据挖掘

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In this study, the computational accuracy of BCM compressible Euler solver was first validated with NACA0012 airfoil. The result of validation showed that BCM was in good agreement with the TAS code. Next, the BCM solver was applied to the aerodynamic design optimization problem of shock free airfoil. The airfoil without a shock wave was successfully designed. Finally, data mining was performed using POD in order to understand the characteristics of configuration for the obtained airfoils by optimization. As a result, it is revealed that the acceleration of flow on upper surface is reduced by the flattened upper surface of airfoil to weaken a shock wave.
机译:在本研究中,首先使用NACA0012机翼验证了BCM可压缩Euler求解器的计算精度。验证结果表明BCM与TAS代码完全一致。接下来,将BCM求解器应用于无冲击翼型的空气动力学设计优化问题。成功设计了无冲击波的机翼。最后,使用POD进行数据挖掘,以便通过优化了解获得的机翼的构型特征。结果表明,由于翼型件的上表面变平而减小了上表面上的流动加速度,从而减弱了冲击波。

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