倒立翼型Eppler 423和轮床襟翼在快背汽车上Ahmed车身的气动特性

Q2 Engineering Automotive Experiences Pub Date : 2022-06-19 DOI:10.31603/ae.7067
Z. Arifin, S. Suyitno, D. D. P. Tjahjana, W. E. Juwana, R. A. Rachmanto, C. H. Brillianto, U. Ubaidillah, S. D. Prasetyo, Arinal Falah Muhammad, M. Rosli
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引用次数: 2

摘要

空气动力学装置的安装,如应用轮尼襟翼的后翼,对提高车辆性能非常重要,可以产生下压力,减少汽车转弯和刹车时的打滑。本研究的目标是确定使用Eppler 423翼型增加的尾翼的空气动力学特性,该翼型采用了轮尼襟翼,具有攻角和轮尼襟翼高度的变化。后翼被安装在艾哈迈德的身体与后方15°的斜角,这是类似的配置在一个快背型车。本研究采用ahmed车身设计,利用ANSYS Student R18.2进行计算流体动力学(CFD)仿真,并进行三维建模。尾翼的迎角有三种变化(0°、7.5°和15°),格尼襟翼高度有五种变化,分别为0%、0.5%、1%、1.5%和2%的弦线长度。在这项研究中,最佳的变化是在攻角为15⁰,高度为2% c时,与没有Gurney皮瓣的结果相比,这种配置将CL/CD比提高了25.36%。
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Aerodynamic Characteristics of Ahmed Body with Inverted Airfoil Eppler 423 and Gurney Flap on Fastback Car
The installation of aerodynamic devices, such as rear wings with the application of a Gurney flap, is very important to improve the performance of vehicles and can generate downforce and reduce slip when a car turns and brakes. The goal of this study was to determine the aerodynamic characteristics of the addition of a rear wing using an Eppler 423 airfoil, which was applied with a Gurney flap featuring variations in the angle of attack and the height of the Gurney flap. The rear wing was mounted on the Ahmed body with a rear slant angle of 15°, which is similar to the configuration on a fastback type car. This research was conducted by 3D modeling through computational fluid dynamics (CFD) simulation using ANSYS Student R18.2 by using ahmed body design. There are three variations in the angle of attack for the rear wing (0°, 7.5°, and 15°), as well as five variations in Gurney flap height of 0%, 0.5%, 1%, 1.5%, and 2% for the chord-line length. In this study, the best variation was found at an angle of attack of 15⁰ with a height of 2% C. From this configuration improved CL/CD ratio by 25.36% when compared to the results without a Gurney flap.
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来源期刊
Automotive Experiences
Automotive Experiences Engineering-Automotive Engineering
CiteScore
3.00
自引率
0.00%
发文量
14
审稿时长
12 weeks
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