This is the author accepted manuscript. The final version is available from Elsevier via the DOI in this record The vibration mitigation method based on crowd flow control is verified by comparing the numerical and experimental results of its damping performance. The pedestrian characteristics are simulated with the upgraded social force model to include the effects of obstacles on pedestrian commute in a blocking scenario. The coupling system's control equation is established by loading a mass-spring-damping (MSD) model on the structure and the crowd-footbridge vertical interaction is analyzed. In this regard, a large-span interior footbridge in a shopping mall was analyzed, which had been presented in a previous study. The numerical vibra...
Slender steel footbridges suffer excessive human-induced vibrations due to their low damping nature ...
The paper investigates an existing suspended footbridge located in Seriate (Bergamo, Italy) which su...
Footbridges with low natural frequency are susceptible to excessive vibration serviceability problem...
As the pedestrian bridge conception, from now, expands more in the length span whereas the cross sec...
As part of a continuing study on effects of humans on loading and dynamic response of footbridges, a...
The characteristic vertical vibration of a flexible footbridge subject to crowd loading is examined ...
Footfalls can produce vibrations that are irritating to occupants, or disruptive to vibration-sensit...
In the present paper, a detailed crowd model is applied to investigate the impact of vertical human-...
Increasing strength of new structural materials and longer spans of new footbridges, accompanied wit...
issue: 1-2articleIncreasing strength of new structural materials and longer spans of new footbridges...
In this paper, the performance of vibration absorbers in reducing the vertical deflections of the fo...
The issue of excessive vibration of footbridges due to pedestrian loading is now well documented. Br...
© 2016 American Society of Civil Engineers. This article presents an evaluation of the dynamic behav...
The research into modeling walking-induced dynamic loading and its effects on footbridge structures ...
Footbriges are often prone to vibrations induced by pedestrian loading. They are long and slender an...
Slender steel footbridges suffer excessive human-induced vibrations due to their low damping nature ...
The paper investigates an existing suspended footbridge located in Seriate (Bergamo, Italy) which su...
Footbridges with low natural frequency are susceptible to excessive vibration serviceability problem...
As the pedestrian bridge conception, from now, expands more in the length span whereas the cross sec...
As part of a continuing study on effects of humans on loading and dynamic response of footbridges, a...
The characteristic vertical vibration of a flexible footbridge subject to crowd loading is examined ...
Footfalls can produce vibrations that are irritating to occupants, or disruptive to vibration-sensit...
In the present paper, a detailed crowd model is applied to investigate the impact of vertical human-...
Increasing strength of new structural materials and longer spans of new footbridges, accompanied wit...
issue: 1-2articleIncreasing strength of new structural materials and longer spans of new footbridges...
In this paper, the performance of vibration absorbers in reducing the vertical deflections of the fo...
The issue of excessive vibration of footbridges due to pedestrian loading is now well documented. Br...
© 2016 American Society of Civil Engineers. This article presents an evaluation of the dynamic behav...
The research into modeling walking-induced dynamic loading and its effects on footbridge structures ...
Footbriges are often prone to vibrations induced by pedestrian loading. They are long and slender an...
Slender steel footbridges suffer excessive human-induced vibrations due to their low damping nature ...
The paper investigates an existing suspended footbridge located in Seriate (Bergamo, Italy) which su...
Footbridges with low natural frequency are susceptible to excessive vibration serviceability problem...