Numerical study of the influence of dome shape on the unsteady aerodynamic performance of a high-speed train's pantograph subjected to crosswind

IF 7.4 2区 工程技术 Q1 ENGINEERING, CIVIL
Xiaofang Li , Dan Zhou , Lirong Jia , Mingzhi Yang
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引用次数: 1

Abstract

This study aims to investigate the unsteady aerodynamic performance of a high-speed train's pantograph with respect to two different dome shapes and without dome under a 20° yaw angle using a delayed detached eddy simulation method. Further, the influence of the dome shape on the simulation results is determined. The accuracy of the numerical method was validated by comparing a few of the numerical results with the wind tunnel test results, and high consistency was observed. An analysis of aerodynamic forces and flow structures around the pantograph was performed. The dome had significant influence on velocity field distribution surrounding the pantograph, particularly in the wake of flow region. Compared with the case where the dome was absent, vortex intensity around the pantograph increased after installing the dome. The existence of the bathtub-type dome resulted in greater flow field disturbance and vortex strength than the baffle-type dome. Moreover, the dome considerably affected time-averaged aerodynamic coefficients and their fluctuations, especially the bathtub-type dome. Additionally, the power spectral density of the unsteady aerodynamic coefficient of each pantograph component exhibited significant peaks and typical broadband distribution characteristics.

侧风作用下穹顶形状对高速列车受电弓非定常气动性能影响的数值研究
本研究旨在采用延迟分离涡模拟方法,研究高速列车受电弓在20°偏航角下,在两种不同圆顶形状和无圆顶情况下的非定常气动性能。此外,确定了圆顶形状对模拟结果的影响。通过将一些数值结果与风洞试验结果进行比较,验证了该数值方法的准确性,并观察到高度一致性。对受电弓周围的空气动力和流动结构进行了分析。圆顶对受电弓周围的速度场分布有显著影响,尤其是在气流尾流区域。与没有圆顶的情况相比,安装圆顶后受电弓周围的涡流强度增加。浴缸式穹顶的存在导致了比挡板式穹顶更大的流场扰动和涡流强度。此外,圆顶显著影响时间平均空气动力学系数及其波动,尤其是浴缸式圆顶。此外,各受电弓部件的非定常气动系数的功率谱密度呈现出显著的峰值和典型的宽带分布特征。
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来源期刊
CiteScore
13.60
自引率
6.30%
发文量
402
审稿时长
15 weeks
期刊介绍: The Journal of Traffic and Transportation Engineering (English Edition) serves as a renowned academic platform facilitating the exchange and exploration of innovative ideas in the realm of transportation. Our journal aims to foster theoretical and experimental research in transportation and welcomes the submission of exceptional peer-reviewed papers on engineering, planning, management, and information technology. We are dedicated to expediting the peer review process and ensuring timely publication of top-notch research in this field.
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