Influence of leading-edge angle of subgrade on aerodynamic loads of high-speed train in wind tunnel

IF 2.7 4区 工程技术 Q2 TRANSPORTATION SCIENCE & TECHNOLOGY Transportation Safety and Environment Pub Date : 2023-05-04 DOI:10.1093/tse/tdad020
Yang Zeyun, Xu Gang, Wu Fan, Zhang Lei, Du Jian, D. Vainchtein
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Abstract

The purpose of this study is to establish the correlation between the boundary layer over the subgrade and the aerodynamic loads acting on the train model in conventional wind tunnel tests. Firstly, flow characteristics around the subgrade with different leading-edge angles (15◦, 30◦, and 45◦) are investigated through PIV experimental test method. Then, wind tunnel tests of the aerodynamic performance of a high-speed train are carried out. The results are compared with previous experimental data obtained by moving model tests. Results show that, due to the presence of boundary layer, the pressure acting on the lower part of the train head decreases, while on other location is not significantly affected. This is the reason for the reduction of the aerodynamic drag and lift on the train. In addition, the reduction effects become more obviously when the thickness of boundary layer increasing. The experimental results obtained could serve as a calibration of aerodynamic forces for wind tunnel tests on high-speed trains.
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路基前缘角对高速列车风洞气动载荷的影响
本研究的目的是建立路基上的边界层与常规风洞试验中作用在列车模型上的气动载荷之间的关系。首先,通过PIV实验测试方法,研究了不同前缘角(15◦、30◦和45◦)下路基周围的流动特性。然后,对某高速列车的气动性能进行了风洞试验。结果与以往通过运动模型试验得到的实验数据进行了比较。结果表明:由于边界层的存在,作用在车头下部的压力减小,而作用在其他部位的压力影响不明显;这就是列车上空气动力阻力和升力减小的原因。此外,随附面层厚度的增加,降低效应更加明显。实验结果可作为高速列车风洞试验的气动力标定依据。
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来源期刊
Transportation Safety and Environment
Transportation Safety and Environment TRANSPORTATION SCIENCE & TECHNOLOGY-
CiteScore
3.90
自引率
13.60%
发文量
32
审稿时长
10 weeks
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