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首页> 外文期刊>SAE International Journal of Commercial Vehicles >Characterization of Aerodynamic Design Spaces for Adjustable Tractor Surfaces
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Characterization of Aerodynamic Design Spaces for Adjustable Tractor Surfaces

机译:可调式拖拉机表面气动设计空间的表征

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摘要

Trailer positioning plays a significant role in the overall aerodynamics of a tractor-trailer combination and varies widely depending on configuration and intended use. In order to minimize aerodynamic drag over a range of trailer positions, adjustable aerodynamic devices may be utilized. For maximum benefit, it is necessary to determine the optimal position of the aerodynamic device for each trailer position. This may be achieved by characterizing a two-dimensional design space consisting of trailer height and tractor-trailer gap length, with aerodynamic drag as the response. CFD simulations carried out using a Lattice-Boltzmann based method were coupled with modeFRONTIER for the creation of multiple Kriging Response Surfaces. Simulations were carried out in multiple phases, allowing for the generation of intermediate response surfaces to estimate predictive error and track response surface convergence. These response surfaces were employed to generate an optimal positioning map for the given aerodynamic device. This methodology was further refined by obtaining positioning maps for multiple tractor configurations.
机译:拖车的定位在牵引车-拖车组合的整体空气动力学中起着重要作用,并且根据配置和预期用途而有很大不同。为了使在拖车位置范围内的空气阻力最小化,可以使用可调节的空气动力学装置。为了获得最大利益,有必要确定每个拖车位置的空气动力学装置的最佳位置。这可以通过表征二维设计空间来实现,该设计空间由挂车高度和挂车-挂车缝隙长度组成,并以气动阻力作为响应。使用基于Lattice-Boltzmann的方法进行的CFD模拟与modeFRONTIER结合使用,以创建多个Kriging响应面。仿真分多个阶段进行,可以生成中间响应表面以估计预测误差并跟踪响应表面收敛。这些响应面用于为给定的空气动力学装置生成最佳的定位图。通过获取多种拖拉机配置的定位图,进一步完善了该方法。

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