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Substantial drag reduction of a tractor-trailer vehicle using gap fairings

机译:使用差距公平的拖拉机拖车车辆减少减少拖拉机

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AbstractAerodynamic drag reduction of heavy vehicles is one of the main issues in fuel saving and environmental gas emission. In general, 50% of the total aerodynamic drag is induced from the region in the front surface of the vehicle and the gap between the tractor and trailer. Various forebody drag-reducing devices for tractor–trailer vehicles were introduced, however, conventional gap fairings or side extenders have technical limitations in reducing the aerodynamic drag exerting on the cab-roof space and gap between the tractor and trailer effectively. In this study, wind tunnel tests were conducted to investigate the drag reduction effects of the newly proposed gap fairings. The proposed gap fairing reduced drag by 16.4% at maximum as well as changed the gap length and deflecting angle. The aero cab fairing (ACF), which is a combination of cab-roof and gap fairings, and the extended aero cab fairing (EACF) considerably reduced the drag coefficient by approximately 11.1% and 17.5%, respectively. A particle image velocimetry was used to investigate flow characteristics, such as spatial distributions of mean velocity, vorticity, and turbulent kinetic energy around the scaled-down tractor–trailer model (1:17) with and without gap fairings to analyze the drag-reduction mechanism of the proposed gap fairings. The proposed gap fairings including ACF and EACF significantly reduced the mean velocity, vorticity in the gap region between the tractor and trailer, and the turbulent kinetic energy on the trailer's front surface. Results can provide useful information for improving the design of new additive flow control devices in reducing the aerodynamic drag of heavy
机译:<![CDATA [ 抽象 重型车辆的空气动力学阻力减少是节省燃料节省和环境气体排放的主要问题之一。通常,从车辆前表面的区域和拖拉机和拖车之间的区域感应50%的空气动力学阻力。介绍了用于拖拉机车辆的各种前置阻力装置,然而,传统的间隙公平或侧延伸器在减少施加在驾驶室屋顶空间和有效的拖拉机之间的间隙中具有技术限制。在这项研究中,进行了风隧道测试,以调查新拟议的差距公平的减阻效应。所提出的差距整流罩在最大值下减少16.4%,改变间隙长度和偏转角度。 Aero驾驶室整流罩(ACF)是驾驶室屋顶和差距公平的组合,并且扩展的航空驾驶室整流罩(EACF)分别将拖曳系数显着降低约11.1%和17.5%。使用粒子图像速度测量来研究流动特性,例如缩小拖拉机 - 拖车模型(1:17)周围的平均速度,涡度和湍流动能的空间分布,并且没有间隙公平,以分析减压拟议差距整体的机制。包括ACF和EACF的拟议差距公平显着降低了拖拉机和拖车之间的间隙区域的平均速度,涡流,以及拖车前表面上的湍流动能。结果可以提供用于改善新添加剂流量控制装置的设计的有用信息,减少重型的空气动力学阻力

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