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An Investigation of Aerodynamic Effects of Body Morphing for Passenger Cars in Close-Proximity

机译:近邻乘用车身体变形空气动力学效应的调查

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摘要

The potential energy-saving benefit for vehicles when travelling in a ‘platoon’ formation results from the reduction in total aerodynamic drag which may result from the interaction of bluff bodies in close-proximity. Early investigations of platooning, prompted by problems of congestion, had shown the potential for drag reduction but was not pursued. More recently, technologies developed for connected-autonomous vehicle control have provided a renewed interest in platooning particularly within the commercial vehicle industry. To date, most aerodynamics-based considerations of platooning have been conducted to assess the sensitivity of drag-saving to vehicle spacing and were based on formations of identically shaped constituents. In this study, the interest was the sensitivity of drag-saving to the shape of the individual platoon constituents. A new reference car, the Resnick model, was specially designed to include front and rear-end add-on sections to make distinct changes in profile form and simulate large-scale body morphing. The results of wind tunnel tests on small-scale models suggested that current trends in low-drag styling may not provide the ideal shape for platoon constituent members and that optimised forms are likely to be dependent upon position in the platoon.
机译:车辆在“排”形成时的潜在节能益处是由凹槽体在近距离接近的相互作用中产生的总空气动力学阻力的降低。通过充血问题提示的分列的早期调查显示,减少减阻但未追求的潜力。最近,为连通自主车辆控制开发的技术已经为特别是在商业车辆行业内的排中提供了再生兴趣。迄今为止,已经进行了大多数基于空气动力学的分列考虑因素,以评估延迟对车辆间距的敏感性,并且基于相同形状的成分的形成。在这项研究中,兴趣是拖延对单个排组分的形状的敏感性。一个新的参考车,Resnick Model,专门设计用于包括前端和后端附加部分,以使简介形式的不同变化并模拟大规模的身体变形。对小型模型的风洞测试结果表明,低压造型的当前趋势可能无法为排组成部分提供理想的形状,并且优化的形式可能取决于排中的位置。

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