Analytical analysis of interaction between a heavy vehicle and a simply supported light bridge based on frequency modulation

This paper analyzes the interaction between a heavy vehicle and a simply supported light bridge based on frequency modulation technique, in which variations of instantaneous frequencies of both bridge and heavy vehicle are considered. The bridge is modeled as a simply supported Euler beam and the he...

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Main Authors: Zhang, Yao, Tan, Kang Hai
Other Authors: School of Civil and Environmental Engineering
Format: Article
Language:English
Published: 2022
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Online Access:https://hdl.handle.net/10356/160047
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-1600472022-07-12T02:39:01Z Analytical analysis of interaction between a heavy vehicle and a simply supported light bridge based on frequency modulation Zhang, Yao Tan, Kang Hai School of Civil and Environmental Engineering Engineering::Civil engineering Vehicle Bridge Interaction Time-Varying This paper analyzes the interaction between a heavy vehicle and a simply supported light bridge based on frequency modulation technique, in which variations of instantaneous frequencies of both bridge and heavy vehicle are considered. The bridge is modeled as a simply supported Euler beam and the heavy vehicle is simplified as a spring-mass system. The variation of instantaneous frequencies of both bridge and vehicle induced by the moving vehicle is usually neglected in classical analysis to decouple the pair of governing equations. However, the coupled vehicle-bridge interaction (VBI) system becomes time-varying and the pair of governing equations cannot be decoupled when the vehicle/bridge mass ratio cannot be neglected. The instantaneous frequencies of both bridge and heavy vehicle including their higher vibration modes are investigated herein. An analytical solution describing the dynamic response of the time-varying VBI system is developed by using the frequency modulation technique. Both Finite Element (FE) method and published experimental data are used for comparison purpose. The predictions of the proposed method match better with those obtained from the FE simulations and experimental measurements than the classical method. Five numerical examples have been adopted to compare the performance of the proposed model and the classical method: the former performs generally well, especially when the vehicle is heavy, or the vehicle frequency is near to the bridge frequency. The classical method is only a special case of the proposed model if either the mass or the stiffness of the vehicle is relatively small compared to the corresponding terms of the bridge. The performance of the proposed method has also been examined in four typical scenarios, where vehicle damping, multi-degree-of-freedom (MDOF) vehicle, road surface roughness, and two-span continuous bridge are involved. 2022-07-12T02:39:00Z 2022-07-12T02:39:00Z 2021 Journal Article Zhang, Y. & Tan, K. H. (2021). Analytical analysis of interaction between a heavy vehicle and a simply supported light bridge based on frequency modulation. International Journal of Structural Stability and Dynamics, 21(6), 2150084-1-2150084-28. https://dx.doi.org/10.1142/S021945542150084X 0219-4554 https://hdl.handle.net/10356/160047 10.1142/S021945542150084X 2-s2.0-85102265665 6 21 2150084-1 2150084-28 en International Journal of Structural Stability and Dynamics © World Scientific Publishing Company. All rights reserved.
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic Engineering::Civil engineering
Vehicle Bridge Interaction
Time-Varying
spellingShingle Engineering::Civil engineering
Vehicle Bridge Interaction
Time-Varying
Zhang, Yao
Tan, Kang Hai
Analytical analysis of interaction between a heavy vehicle and a simply supported light bridge based on frequency modulation
description This paper analyzes the interaction between a heavy vehicle and a simply supported light bridge based on frequency modulation technique, in which variations of instantaneous frequencies of both bridge and heavy vehicle are considered. The bridge is modeled as a simply supported Euler beam and the heavy vehicle is simplified as a spring-mass system. The variation of instantaneous frequencies of both bridge and vehicle induced by the moving vehicle is usually neglected in classical analysis to decouple the pair of governing equations. However, the coupled vehicle-bridge interaction (VBI) system becomes time-varying and the pair of governing equations cannot be decoupled when the vehicle/bridge mass ratio cannot be neglected. The instantaneous frequencies of both bridge and heavy vehicle including their higher vibration modes are investigated herein. An analytical solution describing the dynamic response of the time-varying VBI system is developed by using the frequency modulation technique. Both Finite Element (FE) method and published experimental data are used for comparison purpose. The predictions of the proposed method match better with those obtained from the FE simulations and experimental measurements than the classical method. Five numerical examples have been adopted to compare the performance of the proposed model and the classical method: the former performs generally well, especially when the vehicle is heavy, or the vehicle frequency is near to the bridge frequency. The classical method is only a special case of the proposed model if either the mass or the stiffness of the vehicle is relatively small compared to the corresponding terms of the bridge. The performance of the proposed method has also been examined in four typical scenarios, where vehicle damping, multi-degree-of-freedom (MDOF) vehicle, road surface roughness, and two-span continuous bridge are involved.
author2 School of Civil and Environmental Engineering
author_facet School of Civil and Environmental Engineering
Zhang, Yao
Tan, Kang Hai
format Article
author Zhang, Yao
Tan, Kang Hai
author_sort Zhang, Yao
title Analytical analysis of interaction between a heavy vehicle and a simply supported light bridge based on frequency modulation
title_short Analytical analysis of interaction between a heavy vehicle and a simply supported light bridge based on frequency modulation
title_full Analytical analysis of interaction between a heavy vehicle and a simply supported light bridge based on frequency modulation
title_fullStr Analytical analysis of interaction between a heavy vehicle and a simply supported light bridge based on frequency modulation
title_full_unstemmed Analytical analysis of interaction between a heavy vehicle and a simply supported light bridge based on frequency modulation
title_sort analytical analysis of interaction between a heavy vehicle and a simply supported light bridge based on frequency modulation
publishDate 2022
url https://hdl.handle.net/10356/160047
_version_ 1738844889467060224