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Article | Open Access

CFD Simulation of Passenger Car Aerodynamics and Body Parameter Optimization

Jichao LiXuexin ZhuCong ZhangShiwang DangGuang Chen( )
School of Mechanical and Electrical Engineering, Jining University, Qufu, 273155, China
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Abstract

The rapid advancement of technology and the increasing speed of vehicles have led to a substantial rise in energy consumption and growing concern over environmental pollution. Beyond the promotion of new energy vehicles, reducing aerodynamic drag remains a critical strategy for improving energy efficiency and lowering emissions. This study investigates the influence of key geometric parameters on the aerodynamic drag of vehicles. A parametric vehicle model was developed, and computational fluid dynamics (CFD) simulations were conducted to analyse variations in the drag coefficient ( Cd) and pressure distribution across different design configurations. The results reveal that the optimal aerodynamic performance—characterized by a minimized drag coefficient—is achieved with the following parameter settings: engine hood angle (α) of 15°, windshield angle (β) of 25°, rear window angle (γ) of 40°, rear upwards tail lift angle (θ) of 10°, ground clearance (d) of 100 mm, and side edge angle(s) of 5°. These findings offer valuable guidance for the aerodynamic optimization of vehicle body design and contribute to strategies aimed at energy conservation and emission reduction in the automotive sector.

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Fluid Dynamics & Materials Processing
Pages 2305-2329

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Cite this article:
Li J, Zhu X, Zhang C, et al. CFD Simulation of Passenger Car Aerodynamics and Body Parameter Optimization. Fluid Dynamics & Materials Processing, 2025, 21(9): 2305-2329. https://doi.org/10.32604/fdmp.2025.067087

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Received: 24 April 2025
Accepted: 20 August 2025
Published: 30 September 2025
© The Author 2024.

This work is licensed under a Creative Commons Attribution 4.0 International License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.