Dynamic Responses of Padma Multipurpose Bridge Truss due to Moving Train Load

Padma Multipurpose Bridge (PMB) is one of the most important projects in the history of Bangladesh due to its regional importance, economic benefit, and primary connectivity of one-third population of the country. The bridge is 6.15km long, connecting the ends of Mawa and Janjira in Bangladesh. T...

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Hlavní autoři: S. Ahmed, Khondaker, T. W. Chuan, Max, Dai, Jian, K Keng, Ang
Médium: Článek
Jazyk:angličtina
Vydáno: Research and Development Wing, MIST 2023
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On-line přístup:http://dspace.mist.ac.bd:8080/xmlui/handle/123456789/750
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author S. Ahmed, Khondaker
T. W. Chuan, Max
Dai, Jian
K Keng, Ang
author_browse Dai, Jian
K Keng, Ang
S. Ahmed, Khondaker
T. W. Chuan, Max
author_facet S. Ahmed, Khondaker
T. W. Chuan, Max
Dai, Jian
K Keng, Ang
author_sort S. Ahmed, Khondaker
collection DSpace
description Padma Multipurpose Bridge (PMB) is one of the most important projects in the history of Bangladesh due to its regional importance, economic benefit, and primary connectivity of one-third population of the country. The bridge is 6.15km long, connecting the ends of Mawa and Janjira in Bangladesh. The entire project is challenging to construct and complex in design as it contains both four-lane highways and train tracks supported by a double-deck composite warren truss. In this study, the dynamic response of the truss due to the moving train has been analyzed using the Moving Element Method (MEM). In this process, a separate finite element model has been developed using Finite Element (FE) program to convert the double deck truss into an equivalent beam. Analysis has been conducted for a series of different load cases, converging to the most realistic case where the actual train parameters are considered. Parametric studies have been carried out to determine the dynamic responses of the bridge with varying pier spacing and speed of the train. The most optimal solution has been discussed with the effect of the vibration of the train acting on the multi-purpose Padma bridge. The bridge's dynamic amplification factor (DAF) at a design speed of below 100km/hr is found 1.05. The parametric study shows that the critical train speed for the PMB is 1400km/hr resulting in the bridge resonance with a DAF of 18. It is also evident that with the increase of pier spacing the resonance of the bridge is expected to occur at a relatively lower speed.
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spelling oai:localhost:123456789-7502023-01-22T08:31:00Z Dynamic Responses of Padma Multipurpose Bridge Truss due to Moving Train Load S. Ahmed, Khondaker T. W. Chuan, Max Dai, Jian K Keng, Ang Padma Bridge, Warren Truss, Moving Element Method, Dynamic Response, Dynamic Amplification Factor, Train Load Padma Multipurpose Bridge (PMB) is one of the most important projects in the history of Bangladesh due to its regional importance, economic benefit, and primary connectivity of one-third population of the country. The bridge is 6.15km long, connecting the ends of Mawa and Janjira in Bangladesh. The entire project is challenging to construct and complex in design as it contains both four-lane highways and train tracks supported by a double-deck composite warren truss. In this study, the dynamic response of the truss due to the moving train has been analyzed using the Moving Element Method (MEM). In this process, a separate finite element model has been developed using Finite Element (FE) program to convert the double deck truss into an equivalent beam. Analysis has been conducted for a series of different load cases, converging to the most realistic case where the actual train parameters are considered. Parametric studies have been carried out to determine the dynamic responses of the bridge with varying pier spacing and speed of the train. The most optimal solution has been discussed with the effect of the vibration of the train acting on the multi-purpose Padma bridge. The bridge's dynamic amplification factor (DAF) at a design speed of below 100km/hr is found 1.05. The parametric study shows that the critical train speed for the PMB is 1400km/hr resulting in the bridge resonance with a DAF of 18. It is also evident that with the increase of pier spacing the resonance of the bridge is expected to occur at a relatively lower speed. 2023-01-22T08:30:58Z 2023-01-22T08:30:58Z 2022-11 Article 2224-2007 http://dspace.mist.ac.bd:8080/xmlui/handle/123456789/750 en application/pdf Research and Development Wing, MIST
spellingShingle Padma Bridge, Warren Truss, Moving Element Method, Dynamic Response, Dynamic Amplification Factor, Train Load
S. Ahmed, Khondaker
T. W. Chuan, Max
Dai, Jian
K Keng, Ang
Dynamic Responses of Padma Multipurpose Bridge Truss due to Moving Train Load
title Dynamic Responses of Padma Multipurpose Bridge Truss due to Moving Train Load
title_full Dynamic Responses of Padma Multipurpose Bridge Truss due to Moving Train Load
title_fullStr Dynamic Responses of Padma Multipurpose Bridge Truss due to Moving Train Load
title_full_unstemmed Dynamic Responses of Padma Multipurpose Bridge Truss due to Moving Train Load
title_short Dynamic Responses of Padma Multipurpose Bridge Truss due to Moving Train Load
title_sort dynamic responses of padma multipurpose bridge truss due to moving train load
topic Padma Bridge, Warren Truss, Moving Element Method, Dynamic Response, Dynamic Amplification Factor, Train Load
url http://dspace.mist.ac.bd:8080/xmlui/handle/123456789/750
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AT twchuanmax dynamicresponsesofpadmamultipurposebridgetrussduetomovingtrainload
AT daijian dynamicresponsesofpadmamultipurposebridgetrussduetomovingtrainload
AT kkengang dynamicresponsesofpadmamultipurposebridgetrussduetomovingtrainload