双座城市轿车车身设计的数值模拟研究

Q2 Engineering Automotive Experiences Pub Date : 2022-04-18 DOI:10.31603/ae.6304
Randi Purnama Putra, Dori Yuvenda, Muji Setyo, Andrizal Andrizal, M. Martias
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引用次数: 2

摘要

为了解决城市地区的拥堵和停车位问题,需要一辆城市汽车。然而,目前城市车的车身设计仍然存在问题,即阻力系数值大,导致油耗增加。本研究旨在设计一个更符合空气动力学的两名乘客的城市汽车车身,以尽量减少燃料的使用。本研究方法是利用ANSYS fluent student version 2021建立数值模拟模型。以阻力系数值、速度流线和速度等高线为形式的参数是对城市汽车气动特性的分析。结果表明,考虑到人体工程学参数和使用者舒适度,设计的城市车的尺寸为长2.59 m,宽1.6 m,高1.52 m,符合印尼人的性格。此外,从所进行的独立网格分析中,得到误差值最小的网格数,即C网格(网格数为129,635)。网格C的误差为7.2%。研究发现,随着速度的增加,产生的阻力系数(CD)相对较小。在速度为10m /s的城市汽车中,阻力系数值为0.599,在速度为20m /s时,阻力系数值为0.594,在速度为30m /s时阻力系数值为0.591。
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Body City Car Design of Two Passengers Capacity: A Numerical Simulation Study
A city car is needed to overcome congestion and parking spaces in urban areas. However, currently, the body design of the city car is still experiencing problems, namely the value of the large drag coefficient, which causes an increase in fuel consumption. This study aims to design a city car body with two passengers that is more aerodynamic so as to minimize fuel use. This research method is a numerical simulation model using the ANSYS fluent students version 2021. Parameters in the form of drag coefficient values, velocity streamlines and velocity contours on the city car are aerodynamic aspects that are analyzed. The results show that the dimensions of the designed city car have a length of 2.59 m, a width of 1.6 m, and a height of 1.52 m by considering the ergonomic parameters and comfort of the user so that it fits the character of the people in Indonesia. In addition, from the independence grid analysis performed, the value of the number of meshes that have the smallest error value is obtained, namely mesh C (the number of meshes is 129,635). Mesh C has an error of 7.2%. It was found that as the velocity increases, the value of the drag coefficient (CD) produced is relatively smaller. In a city car with a velocity of 10 m/s, the drag coefficient value is 0.599, at a velocity of 20 m/s, the drag coefficient value is 0.594, and a velocity of 30 m/s is a drag coefficient value of 0.591.
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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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