侧风
排
空气动力学
空气动力
超车
阻力系数
航空航天工程
分离涡模拟
机械
计算机科学
计算流体力学
阻力
工程类
物理
雷诺平均Navier-Stokes方程
控制(管理)
土木工程
人工智能
作者
Jianbin Luo,Mingsen Li,Ke Mi,Zhida Liang,Xiaofeng Chen,Lei Ye,Yuanhao Tie,Song Xu,Haiguo Zhang,Guiguang Chen,Chunmei Jiang
标识
DOI:10.1108/hff-09-2023-0558
摘要
Purpose The purpose of this paper is to study the aerodynamic characteristics of Ahmed body in longitudinal and lateral platoons under crosswind by computational fluid dynamics simulation. It helps to improve the aerodynamic characteristics of vehicles by providing theoretical basis and engineering direction for the development and progress of intelligent transportation. Design/methodology/approach A two-car platoon model is used to compare with the experiment to prove the accuracy of the simulation method. The simplified Ahmed body model and the Reynolds Averaged N-S equation method are used to study the aerodynamic characteristics of vehicles at different distances under cross-winds. Findings When the longitudinal distance x/L = 0.25, the drag coefficients of the middle and trailing cars at β = 30° are improved by about 272% and 160% compared with β = 10°. The side force coefficients of the middle and trailing cars are increased by 50% and 62%. When the lateral distance y/W = 0.25, the side force coefficients of left and middle cars at β = 30° are reduced by 38% and 37.5% compared with β = 10°. However, the side force coefficient of the right car are increased by about 84.3%. Originality/value Most of the researches focus on the overtaking process, and there are few researches on the neat lateral platoon. The innovation of this paper is that in addition to studying the aerodynamic characteristics of longitudinal driving, the aerodynamic characteristics of neat lateral driving are also studied, and crosswind conditions are added. The authors hope to contribute to the development of intelligent transportation.
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