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The Drag Reducing Effect of Vortex Generators on Tractor-Trailer Vehicles

机译:涡流发电机在拖拉机拖车车辆上的阻力效应

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Class 8 vehicles, specifically tractor-trailer type, are crucial to the flow of goods across the United States; however these vehicles are highly inefficient, with much of the engine's power used to overcome drag forces. For this paper, the use of vortex generators was explored with intentions to decrease drag on tractor-trailer vehicles. Two models were examined: a single vehicle at highway speed and two vehicles at highway speed, with standard convoy follow distance. Each model has two experimental versions, each with a different type of vortex generator. The two types of vortex generators selected for testing were commercially available Airtabs and vortex generators commonly used on the wings of aircraft. Models of vehicles with and without such additions were constructed in SolidWorks, with computational fluid dynamics performed in ANSYS Fluent. This research analyzed how these additions to the trailing edge of the trailer's top and side surfaces affect the overall drag and fluid velocity distribution around the vehicles. Simulation results indicate a net drag reduction in both single vehicle and convoying vehicle situations with the addition of Airtabs to both vehicles, and a net increase in drag for both situations with the addition of aircraft vortex generators. Further research should be conducted to investigate the effects of the height of vortex generators as well as vehicle spacing in convoy situations.
机译:8级车辆,特别是拖拉机拖车类型,对美国的商品流动至关重要;然而,这些车辆具有高效的,其发动机的大部分功率用于克服阻力。为此,探讨了涡流发生器的使用,以减少拖拉机拖车车辆的拖累。检查了两种型号:高速公路速度和公路速度的两辆车辆,标准车队跟随距离。每个型号都有两个实验版本,每个版本都有不同类型的涡流发生器。选择用于测试的两种类型的涡流发生器是商业上可获得的Airtabs和涡旋发电机,通常用于飞机翅膀上。在SolidWorks中构建了具有和不具有此类添加的车辆的模型,并且在ANSYS流畅的计算流体动力学中进行了计算流体动力学。该研究分析了拖车顶部和侧表面的后缘的增加如何影响车辆周围的整体阻力和流体速度分布。仿真结果表明,通过添加空中的空气球体对两辆车辆和配套车辆情况进行净减少,并通过添加飞机涡流发生器来阻止两种情况的净增加。应进行进一步的研究,以研究涡流发生器高度的影响以及车队情况中的车辆间距。

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