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Aerodynamic Comparison of Tractor-Trailer Platooning and A-Train Configuration

机译:拖拉机 - 拖车排式排放和火车配置的空气动力学比较

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Modern aerodynamic Class 8 freight tractors can improve vehicle freight efficiency and fuel economy versus older traditional style tractors when pulling Canadian style A- or B-Train double trailer long combination vehicles (LCV's) at highway speeds. This paper compares the aerodynamic performance of a current generation aerodynamic tractor with several freight hauling configurations through computational fluid dynamics evaluations using the Lattice-Boltzmann methodology. The configurations investigated include the tractor hauling a standard 53′ trailer, a platooning configuration with a 30′ separation distance, and an A-Train configuration including two 48′ trailers connected with a dolly converter. The study demonstrates CFD's capability of evaluating extremely long vehicle combinations that might be difficult to accomplish in traditional wind tunnels due to size limitations. The paper discusses the relevance of improvements in freight configurations to legislative discussions in the United States and other countries on rules modifications to achieve improved freight efficiency and associated reductions in greenhouse gas emissions.
机译:现代空气动力学8级货运拖拉机可以提高车辆货运效率和燃油经济性,而在高速公路速度下拉加拿大风格A-或B火车双拖车长组合车辆(LCV)。本文通过使用Lattice-Boltzmann方法的计算流体动力学评估,比较了当前一代空气动力学拖拉机的空气动力学性能。研究的配置包括拖拉机牵引标准的53'拖车,具有30英尺的分离距离的排列配置,以及包括与移动式转换器连接的两个48'拖车的动继车配置。该研究表明了CFD,评估了由于尺寸限制而在传统的风隧道中难以完成的极长的车辆组合的能力。本文讨论了货运配置改善在美国和其他国家关于规范修改的立法讨论的相关性,以实现改善的货运效率和温室气体排放中的相关减少。

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