首页> 外文会议>SAE World Congress Experience >Investigation of Drag Reduction Technologies for Light-Duty Vehicles Using Surface, Wake and Underbody Pressure Measurements to Complement Aerodynamic Drag Measurements
【24h】

Investigation of Drag Reduction Technologies for Light-Duty Vehicles Using Surface, Wake and Underbody Pressure Measurements to Complement Aerodynamic Drag Measurements

机译:使用表面,唤醒和底部压力测量对轻型车辆阻力减少技术的调查,以补充空气动力学阻力测量

获取原文

摘要

A multi-year, multi-vehicle study was conducted to quantify the aerodynamic drag changes associated with drag reduction technologies for light-duty vehicles. Various technologies were evaluated through full-scale testing in a large low-blockage closed-circuit wind tunnel equipped with a rolling road, wheel rollers, boundary-layer suction and a system to generate road-representative turbulent winds. The technologies investigated include active grille shutters, production and custom underbody treatments, air dams, wheel curtains, ride height control, side mirror removal and combinations of these. This paper focuses on mean surface-, wake-, and underbody-pressure measurements and their relation to aerodynamic drag. Surface pressures were measured at strategic locations on four sedans and two crossover SUVs. Wake total pressures were mapped using a rake of Pitot probes in two cross-flow planes at up to 0.4 vehicle lengths downstream of the same six vehicles in addition to a minivan and a pick-up truck. A smaller rake was used to map underbody total pressures in one cross-flow plane downstream of the rear axle for three of these vehicles. The results link drag reduction due to various technologies with specific changes in vehicle surface, rear underbody and wake pressures, and provide a database for numerical studies. In particular, the results suggest that existing or idealized prototype technologies such as active grille shutters, sealing the external grille and ride height control reduce drag by redirecting incoming flow from the engine bay or underbody region to smoother surfaces above and around the vehicle. This mechanism can enhance the reduction in wheel drag due to reduced wheel exposure at lowered ride height. Sealing the external grille was found to redirect the flow more efficiently than closing the grille shutters, and resulted in greater drag reduction. Underbody treatments were also found in some cases to redistribute the flow around the vehicle to reduce pressure drag in addition to underbody friction drag. The magnitude and spatial extent of the measured pressure changes due to the various technologies were often consistent with the amount of drag reduction.
机译:进行多年的多车辆研究,以量化与减少轻型车辆的减少技术相关的空气动力学阻力变化。通过在配备有滚动道路,轮辊,边界层抽吸和系统的大型低封闭式闭环风洞中进行全面测试评估各种技术,以产生道路代表湍流风。调查的技术包括活跃的格栅百叶窗,生产和定制的底层治疗,空气坝,车轮窗帘,乘坐高度控制,侧视镜去除和这些组合。本文侧重于平均表面,唤醒和底部压力测量及其与空气动力学阻力的关系。在四个轿车上的战略位置测量表面压力和两个交叉SUV。除了小型货车和拾取卡车之外,在两个交叉平面中使用两个横流平面中的皮托探针的耙子探头绘制了唤醒总压力。使用较小的耙子将在后轴下的一个交叉平面中映射到这些车辆下游的一个交叉流平面中。结果链接减少阻力,由于各种技术,具有车辆表面,后部底部和唤醒压力的特定变化,并提供了用于数值研究的数据库。特别地,结果表明,现有或理想化的原型技术,如有源格栅百叶窗,密封外部格栅和骑行高度控制减少通过重定向从发动机舱或另一个机构区域重定向到车辆上方和周围的表面的流动。由于降低的乘坐高度,这种机构可以增强由于缩小的车轮曝光而导致的轮拖减速。密封外部格栅被发现比关闭格栅百叶窗更有效地重定向流量,并导致减少更大的阻力。在某些情况下,还发现了在某些情况下发现了在某些情况下重新分配了车辆周围的流动以减少压力阻力,除了底部的摩擦阻力。由于各种技术导致的测量压力变化的幅度和空间程度通常与减阻量一致。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号