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Comparative Analysis of Turbulence Models for Automotive Aerodynamic Simulation and Design

机译:汽车空气动力学模拟与设计的湍流模型对比分析

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The reduction of energy consumption and environmental impacts of road vehicles is always a major design objective. Many investigations suggest that reducing aerodynamic drags such as pressure drag and skin friction drag is a more efficient method than engine modification in achieving the design objective. Turbulent flow around a bluff body is notoriously difficult to simulate accurately due to the complexity of the flow conditions around the body, such as complex flow separation and laminar to turbulent flow transition. This paper investigates the flow over a benchmark model called the Ahmed body with a slant angle of 25 degrees, which is considered a challenging problem for RANS approach with two-equation turbulence models (Menter, 1994; Serre et al., 2013). Three popular turbulence models, such as the k-epsilon, k-omega and SST models are evaluated by benchmarking their predictions against experimental data and those of the latest LES solvers. The main purpose of the study is to compare the performances of these models in simulating such a category of flows. In addition, the accuracy and factors that determine the success of such simulation are discussed. Our findings, for the first time, show that with a skillfully generated mesh and proper discretization schemes, the RANS approach with the above two-equation turbulence models are capable of capturing the salient features of the highly complex flow over the Ahmed body with a slant angle of 25 degrees. The performances are as good as the LES solvers as reported in Serre et al. (2013), if not better for time-averaged flow simulations. The SST model produces the best results among the three models studied. This study could assist designers in the automotive industry in the applications of these cost-effective tools to improve their design productivity. Future study will focus on the performances of the models in simulating time-dependent flows over the Ahmed body.
机译:降低路车辆的能耗和环境影响始终是主要的设计目标。许多调查表明,减少压力阻力和皮肤摩擦阻力等空气动力学阻力是比实现设计目标的发动机修改更有效的方法。由于身体周围的流动条件的复杂性,例如复杂的流动分离和湍流流动转变,湍流体围绕凸起体周围的湍流难以模拟。本文调查了一种称为Ahmed主体的基准模型的流量,该模型具有25度的倾斜角度,这被认为是具有双等式湍流模型的Rans方法的具有挑战性问题(MENTER,1994; Serre等,2013)。通过基于实验数据的预测和最新的LES求解器的预测来评估三种流行的湍流模型,例如K-EPSILON,K-OMEGA和SST模型。该研究的主要目的是比较这些模型的性能在模拟这样的流动中。此外,还讨论了确定这种模拟成功的准确性和因素。我们的研究结果表明,通过熟练地产生的网格和适当的离散化方案,RAN方法具有上述两级湍流模型能够捕获高度复杂的流动的突出特征,凹部倾斜角度为25度。如Serre等人所述的LES溶剂如LES溶剂一样好。 (2013),如果不适合时间平均流量模拟。 SST模型在研究的三种模型中产生了最佳效果。本研究可以帮助汽车行业的设计者在这些具有这些成本效益的工具的应用中,以提高其设计生产力。未来的研究将专注于模拟艾哈迈德身体上的模拟时间流动的模型的性能。

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