Compilation of wheel-rail comprehensive irregularity spectrum for subway vehicle
The irregularity excitation experienced by subway vehicles is mainly the result of the interaction between the track and wheel. However, in the early system design and simulation analysis of subway vehicles, most only used the traditional standard track irregularity spectrum as the input excitation,...
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sg-ntu-dr.10356-1807552024-10-23T01:08:32Z Compilation of wheel-rail comprehensive irregularity spectrum for subway vehicle Wang, Qiushi Zhao, Hui Gong, Dao Qiu, Jinlong Wu, Pengfei Li, Xiaoming Zhu, Xiyang Xiang, Hongyi Wang, Tengfei Xiao, Zhongmin Zhou, Jinsong School of Mechanical and Aerospace Engineering Engineering Subway vehicle Wheel irregularity The irregularity excitation experienced by subway vehicles is mainly the result of the interaction between the track and wheel. However, in the early system design and simulation analysis of subway vehicles, most only used the traditional standard track irregularity spectrum as the input excitation, ignoring or underestimating the contribution of the wheel irregularity. Based on our statistical analysis of 200 000 km of tracking test data of subway vehicle wheel irregularities, we found that the short-wave irregularity caused by the wheels far exceeds the traditional standard track irregularity. The service condition of the vehicle is seriously affected, especially in the final stage of a wheel re-profile period. To address the above issues: Firstly, the sensitive wavelength range (16. 67–2500 mm) of subway vehicles was derived based on the axle box acceleration spectrum of IEC61373: 2010, which was very close to the wavelength range (50–2627 mm) of the wheel irregularity spectrum proposed later, demonstrating the importance of compiling a wheel irregularity spectrum; Secondly, based on the large number of tracking test data of wheel out-of-roundness, a calculation method of the wheel irregularity quantile spectrum under the Johnson non-normal transformation system was proposed; Thirdly, according to the different stages of the wheel re-profile period, the wheel irregularity spectrum is introduced to correct the short-wave segments of the traditional standard track irregularity spectrum to compile a wheel-rail comprehensive irregularity spectrum. This work is supported by the National Natural Science Foundation of China (Grant No. 51805373). And thanks the China Scholarship Council for supporting Qiushi Wang to study at school of Mechanical and Aerospace Engineering in Nanyang Technological University, Singapore, the support number is 202106260138. 2024-10-23T01:08:31Z 2024-10-23T01:08:31Z 2024 Journal Article Wang, Q., Zhao, H., Gong, D., Qiu, J., Wu, P., Li, X., Zhu, X., Xiang, H., Wang, T., Xiao, Z. & Zhou, J. (2024). Compilation of wheel-rail comprehensive irregularity spectrum for subway vehicle. Probabilistic Engineering Mechanics, 78, 103691-. https://dx.doi.org/10.1016/j.probengmech.2024.103691 0266-8920 https://hdl.handle.net/10356/180755 10.1016/j.probengmech.2024.103691 2-s2.0-85204584294 78 103691 en Probabilistic Engineering Mechanics © 2024 Elsevier Ltd. All rights are reserved, including those for text and data mining, AI training, and similar technologies. |
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Engineering Subway vehicle Wheel irregularity Wang, Qiushi Zhao, Hui Gong, Dao Qiu, Jinlong Wu, Pengfei Li, Xiaoming Zhu, Xiyang Xiang, Hongyi Wang, Tengfei Xiao, Zhongmin Zhou, Jinsong Compilation of wheel-rail comprehensive irregularity spectrum for subway vehicle |
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The irregularity excitation experienced by subway vehicles is mainly the result of the interaction between the track and wheel. However, in the early system design and simulation analysis of subway vehicles, most only used the traditional standard track irregularity spectrum as the input excitation, ignoring or underestimating the contribution of the wheel irregularity. Based on our statistical analysis of 200 000 km of tracking test data of subway vehicle wheel irregularities, we found that the short-wave irregularity caused by the wheels far exceeds the traditional standard track irregularity. The service condition of the vehicle is seriously affected, especially in the final stage of a wheel re-profile period. To address the above issues: Firstly, the sensitive wavelength range (16. 67–2500 mm) of subway vehicles was derived based on the axle box acceleration spectrum of IEC61373: 2010, which was very close to the wavelength range (50–2627 mm) of the wheel irregularity spectrum proposed later, demonstrating the importance of compiling a wheel irregularity spectrum; Secondly, based on the large number of tracking test data of wheel out-of-roundness, a calculation method of the wheel irregularity quantile spectrum under the Johnson non-normal transformation system was proposed; Thirdly, according to the different stages of the wheel re-profile period, the wheel irregularity spectrum is introduced to correct the short-wave segments of the traditional standard track irregularity spectrum to compile a wheel-rail comprehensive irregularity spectrum. |
author2 |
School of Mechanical and Aerospace Engineering |
author_facet |
School of Mechanical and Aerospace Engineering Wang, Qiushi Zhao, Hui Gong, Dao Qiu, Jinlong Wu, Pengfei Li, Xiaoming Zhu, Xiyang Xiang, Hongyi Wang, Tengfei Xiao, Zhongmin Zhou, Jinsong |
format |
Article |
author |
Wang, Qiushi Zhao, Hui Gong, Dao Qiu, Jinlong Wu, Pengfei Li, Xiaoming Zhu, Xiyang Xiang, Hongyi Wang, Tengfei Xiao, Zhongmin Zhou, Jinsong |
author_sort |
Wang, Qiushi |
title |
Compilation of wheel-rail comprehensive irregularity spectrum for subway vehicle |
title_short |
Compilation of wheel-rail comprehensive irregularity spectrum for subway vehicle |
title_full |
Compilation of wheel-rail comprehensive irregularity spectrum for subway vehicle |
title_fullStr |
Compilation of wheel-rail comprehensive irregularity spectrum for subway vehicle |
title_full_unstemmed |
Compilation of wheel-rail comprehensive irregularity spectrum for subway vehicle |
title_sort |
compilation of wheel-rail comprehensive irregularity spectrum for subway vehicle |
publishDate |
2024 |
url |
https://hdl.handle.net/10356/180755 |
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1814777760510377984 |