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Aerodynamic Drag and Engine Cooling Effects on Class 8 Trucks in Platooning Configurations

机译:排成一排的8类卡车的气动阻力和发动机冷却效果

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摘要

The increasing importance of reducing greenhouse gas emissions and the ongoing evolution of vehicle-to-vehicle connectivity technologies have generated significant interest in platooning for commercial vehicles, where two or more vehicles travel in same traffic lane in relatively close proximity. This paper examines the effect of platooning on four increasingly aerodynamic tractor-trailer configurations, using a Lattice Boltzmann based CFD solver. Each platoon consisted of three identical tractor-trailer configurations traveling in the same lane at 65mph. Two different vehicle to vehicle gaps were studied, 5m and 9m, in addition to singleton (solitary) vehicles, representing an effectively infinite gap. Aerodynamic drag for the lead, middle, and trailing vehicle in the platooning configurations were compared to the corresponding single vehicle tractor-trailer configuration. Unlike similar investigations on platooning that solely focused on the potential fuel economy gain via aerodynamic drag reduction, this paper also highlights the adverse impact of platooning on the engine cooling performance in trailing vehicles, due to the reduction in ram air cooling caused by wake of the upstream vehicle. Since much of the fuel economy gain from aerodynamics could be at risk if the fan has to be engaged to meet engine cooling demand, this analysis should be an essential part of the cost-benefit consideration of platooning in the context of reducing fuel consumption and thereby, greenhouse gas emissions.
机译:减少温室气体排放的重要性日益提高,以及车辆间连通性技术的不断发展,引起了人们对商用车排的兴趣,在商用车排中,两辆或多辆车在相对较近的同一车道行驶。本文使用基于Lattice Boltzmann的CFD求解器,研究了成排对四种越来越多的空气动力学牵引车-拖车配置的影响。每个排都由三个相同的牵引车-拖车配置组成,它们在同一车道上以65mph的速度行驶。除了单身(单独)车辆外,还研究了两种不同的车辆间隙,分别为5m和9m,代表了有效的无限间隙。将排成排的前,中和尾随车辆的气动阻力与相应的单车牵引车-拖车结构进行了比较。与仅针对通过气动减阻获得的潜在燃油经济性进行的排样研究不同,本文还着重指出了排样对尾随车辆的发动机冷却性能的不利影响,这是由于尾流引起的冲压空气冷却降低所致。上游车辆。如果必须使用风扇以满足发动机冷却需求,由于从空气动力学中获得的大量燃油经济性可能处于危险之中,因此在减少燃油消耗并因此减少燃油消耗的情况下,这种分析应该是排成队的成本效益考虑的重要组成部分, 温室气体排放。

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