Automotive Engineering ›› 2023, Vol. 45 ›› Issue (3): 489-500.doi: 10.19562/j.chinasae.qcgc.2023.03.016
Special Issue: 底盘&动力学&整车性能专题2023年
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Yunfei Zha1,2(),Xiaoshan Shi1,Hao Wu1,Minxu Li2,Huiqin Chen3
Received:
2022-06-07
Revised:
2022-07-11
Online:
2023-03-25
Published:
2023-03-22
Contact:
Yunfei Zha
E-mail:zhayf@fjut.edu.cn
Yunfei Zha,Xiaoshan Shi,Hao Wu,Minxu Li,Huiqin Chen. Study of Vehicle Aerodynamics Characteristic Based on Active Tilting Rear Wing[J].Automotive Engineering, 2023, 45(3): 489-500.
1 | 宋笔锋, 稂鑫雨, 薛栋, 等. 鸟翼空气动力学机理的研究现状和进展综述[J/OL]. 中国科学:技术科学: 1-18 (2022-05-16)[2022-05-27].http://kns.cnki.net/kcms/detail/11.5844.TH.20211108.1727.002.html. |
SONG Bifeng, LI Xinyu, XUE Dong, et al. Review of research status and progress of aerodynamic mechanism of bird wings [J/OL]. Science in China: Technology: 1-18 (2022-05-16) [2022-05-27].http://kns.cnki. net/kcms/detail/11.5844.TH.20211108.1727.002.html. | |
2 | 张喆, 宋世达, 王国华, 等. 赛车俯仰运动下的气动特性[J/OL]. 吉林大学学报(工学版): 1-10[2022-05-16]. |
ZHANG Zhe, SONG Shida, WANG Guohua, et al. Aerodynamic characteristics of a racing car in pitching motion [J/OL]. Journal of Jilin University (Engineering and Technology Edition): 1-10 [2022-05- 16]. | |
3 | AHMAD E, SONG Y, KHAN M A, et al. Attitude motion control of a half car model with tracking controller using aerodynamic surfaces[C]. International Automatic Control Conference, Keelung, China, 2019: 1-6. |
4 | 袁志群, 杨明智, 张炳荣. 汽车底部复杂流场的主动和被动控制减阻方法研究[J]. 汽车工程, 2019, 41(5): 536-544,555. |
YUAN Zhiqun, YANG Mingzhi, ZHANG Bingrong. A study on car drag reduction by active and passive control of complex underbody flow field[J]. Automotive Engineering, 2019, 41(5): 536-544,555. | |
5 | MASHROUTEH S, KHAJEPOUR A, KASAIEZADEH A, et al. Multi-actuation controller for performance vehicles: optimal torque allocation and active aerodynamic[J]. IEEE Transactions on Vehicular Technology, 2022, 71(3): 2721-2733. |
6 | CHO J, KIM T K, KIM K H, et al. Comparative investigation on the aerodynamic effects of combined use of underbody drag reduction devices applied to real Sedan[J]. International Journal of Automotive Technology, 2017, 18(6): 959-971. |
7 | BEIGMORADI S, VAHDATI M. Optimal configuration of a hatchback rear end considering drag and stability objectives[J]. Journal of the Brazilian Society of Mechanical Sciences and Engineering, 2019, 41: 334. |
8 | 周涛, 曾忠. FSAE赛车新型曲面前翼尾翼气动优化设计[J].重庆大学学报, 2017,40(10):40-52. |
ZHOU Tao, ZENG Zhong. Aerodynamic optimization design of new curved front wing tail for FSAE racing car[J]. Journal of Chongqing University, 2017, 40(10): 40-52. | |
9 | 邓召文, 余伟, 余思家, 等. 赛车空气动力学套件设计与气动特性研究[J]. 机械设计, 2021, 38(8): 72-79. |
DENG Zhaowen, YU Wei, YU Sijia, et al. Research on aerodynamic kit design and aerodynamic characteristics of racing car [J]. Mechanical Design, 2021, 38(8): 72-79. | |
10 | BULJAC A, DŽIJAN I, KORADE I, et al. Automobile aerodynamics influenced by airfoil-shaped rear wing[J]. International Journal of Automotive Technology, 2016, 3(6): 377-385. |
11 | 丁鹏, 葛如海, 李智, 等. 汽车自适应可调尾翼系统的研发[J]. 汽车工程, 2017, 39(8): 895-899. |
DING Peng, GE Ruhai, LI Zhi, et al. Development of a vehicular adaptive adjustable rear airfoil system[J]. Automotive Engineering, 2017, 39(8): 895-899. | |
12 | 李文华, 孙国强. 某型汽车扰流板辅助制动性能CFD分析[J]. 辽宁工程技术大学学报(自然科学版), 2016, 35(3): 304-307. |
LI Wenhua, SUN Guoqiang. Car rear spoiler cfd analysis of auxiliary brake performance [J]. Journal of Liaoning Technical University(Natural Science), 2016, 35(3): 304-307. | |
13 | 张文海, 王江林, 吉泽勇. 大学生方程式赛车尾翼减阻系统的设计与测试[J]. 机械设计与研究, 2018, 34(6): 202-204. |
ZHANG Wenhai, WANG Jianglin, JI Zeyong. The design and test of the rear wing DRS in FSAE[J]. Machine Design & Research, 2018, 34(6): 202-204. | |
14 | KAJIWARA S. Passive variable rear-wing aerodynamics of an open-wheel racing car[J]. Automotive and Engine Technology, 2017, 2: 107-117. |
15 | 张英朝,杨超,詹大鹏,等.侧风下大学生方程式赛车气动性能研究[J].北京理工大学学报,2019,39(5):491-496. |
ZHANG Yingchao, YANG Chao, ZHAN Dapeng, et al. Research on the aerodynamic performance of formula student cars under crosswind [J]. Journal of Beijing Institute of Technology, 2019,39(5):491-496. | |
16 | 邓召文,高伟,吴超,等.FSAE赛车可调尾翼控制系统样机开发[J].合肥工业大学学报(自然科学版),2016,39(4):445-450. |
DENG Zhaowen, GAO Wei, WU Chao, et al. Prototype development of FSAE racing adjustable tail control system [J]. Journal of Hefei University of Technology (Natural Science Edition), 2016,39(4):445-450. | |
17 | MERKEL J P. Development of multi-element active aerodynamics for the formula SAE car[D].Arlington: The University of Texas at Arlington, 2013. |
18 | 中国汽车工程学会.乘用车空气动力学仿真技术规范:T/CSAE 112—2019 [S].天津:全国汽车标准化技术委员会,2019. |
China Society of Automotive Engineers. Technical specification of passenger vehicle aerodynamic simulation :T/CSAE 112—2019 [S]. Tianjin: National Technical Committee of Auto Standardization, 2019. | |
19 | BMW 530i Automatic E39 (2002) - technical specifications [Z/OL]. (2022-4-17)[2022-5-9]. http://www.carinf.com/en/8170411967. html. |
20 | KATZ J. Aerodynamics in motorsports[J]. Proceedings of the Institution of Mechanical Engineers, Part P: Journal of Sports Engineering and Technology, 2021, 235(4): 324-338. |
21 | 国家技术监督局.汽车操纵稳定性试验方法: 蛇形试验:GB/T6323.1—2014 [S].北京:中国标准出版社,2014. |
The State Bureau of Quality and Technical Supervision. Test method for handling stability of automobiles:snake test:GB/T6323—2014 [S]. Beijing: China Standards Publishing, 2014. |
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