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Computational study of active flow control drag reduction device for utility vehicle

机译:多功能车辆主动流量控制减阻装置的计算研究

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The study presents a computational study of a drag reduction device based on an active boundary layer control for a generic truck-trailer utility road vehicle. The conceptual device is in accordance with upcoming EU regulations regarding attachable aerodynamic devices for heavy utility vehicles. Design and principles of operation of the conceptual device are presented. The device is intended to increase decrease the trailer’s base drag coefficient by manipulation of the separated flow region behind the vehicle base. Results of a steady state Reynolds averaged analysis and Delayed Detached Eddy Simulation are presented to show the discrepancies of fluid flow patterns between baseline and augmented configuration as well as between mentioned CFD approaches. Results for drag reduction for baseline truck-trailer configuration and aerodynamically augmented configuration are presented.
机译:这项研究提出了一种基于减振装置的计算研究,该减阻装置基于主动型边界层控制技术,适用于通用的卡车-拖车多用途公路车辆。概念设备符合即将颁布的有关重型多功能车辆可连接空气动力学设备的欧盟法规。介绍了概念设备的设计和工作原理。该设备旨在通过操纵车辆底部后面的分离流动区域来增加降低拖车的基本阻力系数的能力。给出了稳态Reynolds平均分析和延迟分离涡流模拟的结果,以显示基线和增强配置之间以及提到的CFD方法之间流体流动模式的差异。给出了卡车底盘拖车配置和空气动力增加配置的减阻结果。

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