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Multi-Objective Aerodynamic Optimization of the Streamlined Shape of High-Speed Trains Based on the Kriging Model

机译:基于克里格模型的高速列车流线型多目标气动优化

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摘要

Minimizing the aerodynamic drag and the lift of the train coach remains a key issue for high-speed trains. With the development of computing technology and computational fluid dynamics (CFD) in the engineering field, CFD has been successfully applied to the design process of high-speed trains. However, developing a new streamlined shape for high-speed trains with excellent aerodynamic performance requires huge computational costs. Furthermore, relationships between multiple design variables and the aerodynamic loads are seldom obtained. In the present study, the Kriging surrogate model is used to perform a multi-objective optimization of the streamlined shape of high-speed trains, where the drag and the lift of the train coach are the optimization objectives. To improve the prediction accuracy of the Kriging model, the cross-validation method is used to construct the optimal Kriging model. The optimization results show that the two objectives are efficiently optimized, indicating that the optimization strategy used in the present study can greatly improve the optimization efficiency and meet the engineering requirements.
机译:使空气动力阻力和火车教练员的升程最小化仍然是高速火车的关键问题。随着工程领域中计算技术和计算流体动力学(CFD)的发展,CFD已成功地应用于高速列车的设计过程中。然而,为具有优异的空气动力学性能的高速火车开发新的流线型形状需要巨大的计算成本。此外,很少获得多个设计变量与空气动力学载荷之间的关系。在本研究中,使用Kriging替代模型对高速列车的流线型形状进行多目标优化,其中列车客车的阻力和升程是优化目标。为了提高克里格模型的预测精度,采用交叉验证法构造最优克里格模型。优化结果表明,这两个目标得到了有效的优化,表明本文所采用的优化策略可以大大提高优化效率,满足工程要求。

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