Transfer Path Contribution to Floor Vibration of Metro Vehicles Based on Operational Transfer Path Analysis Method
Вклад передаточных путей в вибрацию пола вагонов метро на основе метода эксплуатационного анализа передаточных путей
2022-03-29
SCID: 54.1/274n9gsr
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OTPAfloor vibrationoperational transfer path analysissecondary suspension pathtransfer path contribution
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Abstract (AI)
Abstract Operational transfer path analysis (OTPA) is an advanced vibration and noise transfer path identification and contribution evaluation method. However, the application of OTPA to rail transit vehicles considers only the excitation amplitude and ignores the influence of the excitation phase. This study considers the influence of the excitation amplitude and phase, and analyzes the contribution of the secondary suspension path to the floor vibration when the metro vehicle runs at 60 km/h, using an analysis based on the OTPA method. The results show that the vertical direction of the anti-rolling torsion bar area provides the maximum contribution to the floor vibration, with a contribution of 22.1%, followed by the longitudinal vibration of the air spring area, with a contribution of 17.1%. Based on the contribution analysis, a transfer path optimization scheme is proposed, which may provide a reference for the optimization of the transfer path of metro vehicles in the future.
Key Findings
1
A transfer path optimization scheme is proposed based on the contribution analysis to guide future metro vehicle transfer path optimization.
2
OTPA traditionally ignores excitation phase; this study incorporates both excitation amplitude and phase into OTPA for rail transit vehicles.
3
The longitudinal vibration of the air spring area is the second-largest contributor, contributing 17.1%.
4
The vertical direction of the anti-rolling torsion bar area is the largest contributor to floor vibration, contributing 22.1%.
5
Using the phase-inclusive OTPA, the secondary suspension path contribution to floor vibration at 60 km/h was analyzed.
Research Object
Secondary suspension transfer paths in a metro vehicle affecting floor vibration during operation at 60 km/h
Research Subject
Contribution of excitation amplitude and phase via transfer paths (especially secondary suspension paths such as anti-rolling torsion bar vertical direction and air spring longitudinal vibration) to floor vibration, and optimization of transfer paths using Operational Transfer Path Analysis (OTPA)
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2022-03-29
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