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An Assessment of Drag Reduction Devices for Heavy Trucks Using Design of Experiments and Computational Fluid Dynamics

机译:使用实验设计和计算流体动力学的重型卡车阻力减少装置的评估

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Aerodynamic drag, lift, and side forces have a profound influence on fuel efficiency, vehicle speed, stability, acceleration and performance. All of these areas benefit from drag reduction and changing the lift force in favor of the operating conditions. The present study simulates the external flow field around a heavy truck with three prototype add-on drag reduction devices using a computational method. The model and the method are selected to be three-dimensional and time-dependent. The Reynolds-averaged Navier Stokes equations are solved using a finite volume method. The Renormalization Group (RNG) k-ε model was elected for closure of the turbulent quantities. The run cases were chosen so that the influence of each drag reduction device could be established using a regression model from a Design of Experiments (DOEX)-derived test matrix.
机译:空气动力学阻力,电梯和侧部力对燃油效率,车速,稳定性,加速和性能具有深远的影响。所有这些领域都可以免于减少减阻和改变提升力,支持操作条件。本研究模拟了使用计算方法的三种原型附加阻力装置的重型卡车周围的外部流场。该模型和方法被选择为三维和时间依赖。使用有限体积方法解决了雷诺平均的Navier Stokes方程。 The Renormalization Group (RNG) k-ε model was elected for closure of the turbulent quantities.选择运行案例,使得可以使用从实验(DOEX)的测试矩阵的设计中的回归模型来建立每个阻力减少装置的影响。

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