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Combined Drag and Cooling Optimization of a Car Vehicle with an Adjoint-Based Approach

机译:具有伴随基于伴随方法的汽车车辆综合阻力和冷却优化

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The main objective of this work is to present an adjoint-based methodology to address combined optimization of drag force and cooling flow rate of an industrial vehicle. In order to cope with cooling effect, the volumetric flow rate is treated through a newly introduced cost function and the corresponding adjoint source term is derived. Also an alternative strategy is presented to tackle aerodynamic vehicle design improvement that relies on a so-called indirect force computation. The overall optimization is treated as a Multi-Objective problem and an original approach, called Optimize Both Favor One (OBFO), is introduced that allows selective emphasis on one or another objective without resorting to artificial cost function balancing. Finally, comparative results are presented to demonstrate the merit of the proposed methodology.
机译:这项工作的主要目的是呈现伴随基于伴随的方法,以解决工业车辆的拖曳力和冷却流量的组合优化。为了应对冷却效果,通过新引入的成本函数处理体积流量,并导出相应的伴随源期限。还提出了一种替代的策略来解决依赖于所谓的间接力计算的空气动力学车辆设计改进。整体优化被视为多目标问题,并介绍了一个原始的方法,称为优化一个(OBFO),允许选择性强调一个或另一个目标,而不诉诸人工成本函数平衡。最后,提出了比较结果来证明所提出的方法的优点。

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