Welcome to Journal of Automotive Safety and Energy,

Journal of Automotive Safety and Energy ›› 2025, Vol. 16 ›› Issue (6): 896-904.DOI: 10.3969/j.issn.1674-8484.2025.06.009

• Automotive Energy Efficiency and Environment Protection • Previous Articles     Next Articles

Aerodynamic drag optimization design of a commercial battery electric pickup truck

CHEN Chunju(), LI Xiaohua(), YU Xianzhong, QI Qi, ZOU Jiayi   

  1. Jiangling Motors Company Limited, Nanchang 330000, China
  • Received:2025-08-30 Revised:2025-10-26 Online:2025-12-31 Published:2026-01-12

Abstract:

A modular optimization scheme for aerodynamic components was proposed to enhance the performance of a commercial pure electric pickup truck built on a traditional fuel vehicle platform. The research combined computational fluid dynamics (CFD) simulation, wind tunnel testing, and coast-down testing to analyze, optimize, and validate the vehicle's aerodynamic performance. The simulations using STAR-CCM+ software identified an excessively high front face, an uneven underbody, and poor sealing to be the three major sources of aerodynamic drag. The investigation focused on eight key components, including the front air dam, side steps, and roof rack, to examine their aerodynamic effects and drag reduction mechanisms. The results indicate that the optimized design reduces the drag coefficient (Cd) by 21.06% in CFD simulations and by 20.6% in wind tunnel tests. The deviation of less than 3% between these values confirms the reliability of the CFD model. Coast-down tests further demonstrates a 6.3% increase in driving range. This work provides practical engineering methodologies and experimental evidence for the aerodynamic development of commercial “fuel-to-electric” converted pickup trucks.

Key words: electric pickup truck, aerodynamic drag, air dam, side steps, roof rack, wind tunnel

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