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CFD Comparison with Wind-Tunnel for a Class 8 Tractor-Trailer

机译:CFD与风洞为8级拖拉机拖车的比较

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Recent regulations on greenhouse gas (GHG) emission standards for heavy-duty vehicles have prompted government agencies to standardize procedures assessing the aerodynamic performance of Class 8 tractor-trailers. The coastdown test procedure is the primary reference method employed to assess vehicle drag currently, while other valid alternatives include constant speed testing, computational fluid dynamics (CFD) simulations, and wind tunnel testing. The main purpose of this paper is to compare CFD simulations with a corresponding 1/8th scale wind tunnel test. Additionally, this paper will highlight the impacts of wind tunnel testing on the total drag coefficient performance as compared to full scale open road analysis with and without real world, upstream turbulence wind conditions. All scale model testing and CFD simulations were performed on a class 8 tractor with a standard 53-foot dry-box trailer. The wind tunnel testing was performed in the Auto Research Center (ARC) wind tunnel. The CFD simulations were performed using PowerFLOW, a Lattice Boltzmann based method solver, on a high fidelity geometric model. Scale model CFD results were also compared to full scale CFD simulations performed in an open road configuration at full scale Reynolds number, with and without real world conditions, to highlight differences between each of the evaluation environments.
机译:最近对重型车辆的温室气体(GHG)排放标准的规定促使政府机构标准化评估8级拖拉机拖车的空气动力学性能的程序。海岸测试程序是用于评估车辆拖动的主要参考方法,而其他有效的替代则包括恒定速度测试,计算流体动力学(CFD)模拟和风洞测试。本文的主要目的是将CFD仿真与相应的1/8尺度风洞测试进行比较。此外,本文将突出风洞检测对总阻力系数性能的影响,与现实世界的全规模开放式道路分析相比,上游湍流风条件。所有比例模型测试和CFD模拟都是在8级拖拉机上进行的,标准的53英尺干式箱拖车。风洞测试是在汽车研究中心(ARC)风洞中进行的。在高保真几何模型上使用PowerFlow(基于格子Boltzmann)的方法求解器进行CFD仿真。 SCALE Model CFD结果也将与全尺寸雷诺数的开放式道路配置中的全尺度CFD模拟进行比较,其中没有真实的世界条件,以突出每个评估环境之间的差异。

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