期刊文献+

计及车身附件气动干涉影响的汽车流场数值仿真研究 被引量:9

A Study on the Numerical Simulation of Vehicle Flow Field with the Aerodynamic Interference of Attachments Considered
在线阅读 下载PDF
导出
摘要 以降低汽车气动阻力、获得最优气动造型为目的,应用计算流体动力学方法对某轿车内外流场进行了数值仿真,分析并总结了车身附件气动干涉和发动机舱内空气流动对整车气动性能的影响。计算结果表明:车身附件对整车气动特性有较大影响。其中,底部结构和轮胎的影响较大;余者(后视镜、雨刮器和门把手)的影响很小。考虑了车身附件的影响后,气动阻力约增加23%;加上发动机舱内空气流动的影响,整车气动阻力共增大约35%。分析还表明,车轮的转动有利于改善车底气流与尾流的相互作用,使气动阻力稍有降低。 Aiming at reducing aerodynamic drag and obtaining optimal aerodynamic shape,CFD technique is applied to the numerical simulation on the external and internal flow field of a car.The effects of car body attachments and underhood airflow on vehicle aerodynamic characteristics are analyzed and summarized.The results of simulation show that the influence of attachments is notable on aerodynamic characteristics,in which the effects of under-body structure and tires are more significant,while those of the remains(rearview mirror,windshield wiper and doorhandle) are trivial.When the effects of attachments are considered,aerodynamic drag increases by around 23%;and if adding on top of it the influence of underhood flow,the total aerodynamic drag will rise by some 35%.The analysis also indicates that the rotation of tires is conducive to the improvement of the interaction between underbody flow and wake flow,leading to a little reduction in aerodynamic drag.
出处 《汽车工程》 EI CSCD 北大核心 2010年第12期1033-1037,共5页 Automotive Engineering
基金 福建省教育厅B类科技项目(JB10150) 国家自然科学基金(50975083) 国家863计划项目(2007AA04Z122)资助
关键词 气动阻力 内外流场 车身附件 发动机舱内空气流动 aerodynamic drag external and internal flow field car body attachments underhood airflow
  • 相关文献

参考文献11

二级参考文献32

  • 1许翼.汽车流场数值仿真平台研究:学位论文[M].北京:清华大学,2000..
  • 2涂尚荣.车身流场仿真网络系统的建模研究:学位论文[M].北京:清华大学,2000..
  • 3谢今明.离地间隙对汽车车身周围流场的影响分析:学位论文[M].北京:清华大学,2000..
  • 4[1]Hucho W H. Aerodynamics of road vehicles. Society of Automotive Engineers,1998
  • 5[3]Mercker E,Wiedemann J. Comparison of different ground simulation techniques for use in automotive wind tunnels. In:Vehicle Aerodynamics,edited by SumantranV and Sovran G,SAE PT-49,1996
  • 6[4]Papenfuss H D,Kronast M. Moving-model technique used in automobile aerodynamics for measurement of ground effects. Experiments in Fluids,1991,11(2-3):161~166
  • 7[3]Robert Lietz and William Pien.A CFD Validation Study for Automotive Aerodynamics[A].SAE 2000 World Congress[C],Detroit,Michgen,USA,2001.
  • 8Simone Sebben. Numerical simulations of a car underbody: effect of front-wheel deflectors [C]// SAE paper 2004-01-1307. Detroit, Michigan, USA: 2004 SAE World Congress, 2004: 1-10.
  • 9Abdullah M Al-Garni, Luis P Bemal, Bahram Khalighi. Experimental Investigation of the Flow around a Generic SUV [C]//SAE paper 2004-01-0228. Detroit, Michigan, USA: 2004 SAE World Congress, 2004: 1-13.
  • 10Junya Ono, Yasushi Murakami, Kenji Okumura. Development of Underbody Aerodynamics Simulation Using Automatically Generated Tetrahedral and Prismatic Cells [C]// SAE2001-01-0704. Detroit, Michigan, USA: 2001 SAE World Congress, 2001: 1-10.

共引文献1311

同被引文献53

引证文献9

二级引证文献30

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部