On the effectiveness of rotational friction hinge damper to control responses of multi-span simply supported bridge to non-uniform ground motions

@article{Shrestha2016OnTE,
  title={On the effectiveness of rotational friction hinge damper to control responses of multi-span simply supported bridge to non-uniform ground motions},
  author={Bipin Shrestha and Hong Hao and Nazman H.J. Ibrahim and Kaiming Bi},
  journal={Advances in Structural Engineering},
  year={2016},
  volume={19},
  pages={1575 - 1591},
  url={https://api.semanticscholar.org/CorpusID:73703779}
}
  • B. ShresthaH. Hao K. Bi
  • Published 1 October 2016
  • Engineering, Environmental Science
  • Advances in Structural Engineering
Base isolation techniques have been extensively used to improve the seismic performance of the bridge structures. The decoupling of the bridge decks from the piers and abutments using rubber isolator could result in significant reduction in seismic forces transmitted to the bridge substructures. However, the isolation devices could also increase the deck displacement and thus enhance the possibility of pounding and unseating damage of bridge decks. Moreover, previous investigations have shown… 

Influence of Rotation-restrained Energy-dissipation Device on the Seismic Performance of a Curved Isolated Bridge

ABSTRACT This article proposes a rotation-restrained energy-dissipation device (RED) for the seismic control of a three-span curved isolated bridge. The configuration and working mechanism of RED are

Seismic assessment of a cable-stayed arch bridge under three-component orthotropic earthquake excitation

The occurred damages during the past significant earthquakes have proved that vertical seismic excitation has tremendous effect on bridges. Three-component earthquake excitations are preferred to

Pseudodynamic Hybrid Simulation of High-Speed Railway Bridge-Track System with Rotational Friction Damper

This paper evaluates seismic performance of a three-span high-speed railway (HSR) simply supported bridge-track system equipped with multi-joints rotational friction damper (MRFD) using pseudodynamic

Rotational Friction Damper’s Performance for Controlling Seismic Response of High Speed Railway Bridge-Track System

: CRTS-II slab ballastless track on bridge is a unique system in China high speed railway. The application of longitudinal continuous track system has obviously changed dynamic characteristics of

Influence of Lower Lateral Bracing on the Seismic Pounding Damage to Slab-On-Girder Steel Bridges

During strong seismic events, seismic-induced pounding has been observed to cause damage to bridges. Previous studies on seismic-induced bridge pounding responses have generally focused on reinforced

Effectiveness of Using RFHDS Connected PIP System for Subsea Pipeline Vibration Control

Pipe-in-pipe (PIP) system can be considered as a structure-tuned mass damper (TMD) system by replacing the hard centralizers by the softer springs and dashpots to connect the inner and outer pipes.

Devices for protecting bridge superstructure from pounding and unseating damages: an overview

Abstract Previous earthquakes have highlighted the seismic vulnerability of bridges due to excessive movements at expansion joints. This movement could lead to the catastrophic unseating failure if

Viscoelastic Dampers at Expansion Joints for Seismic Protection of Bridges

This paper presents results of a study on the use of viscoelastic dampers at expansion joints of highway bridges for preventing superstructure decks from falling off the seats and/or from colliding

Seismic assessment of bridge structures isolated by a shape memory alloy/rubber-based isolation system

This paper explores the effectiveness of shape memory alloy (SMA)/rubber-based isolation systems for seismic protection of bridges against near-field earthquakes by performing a sensitivity analysis.

Parameters influencing the behavior of a new friction damper device

    I. Mualla
    Engineering, Environmental Science
  • 2000
This work presents a study on the parameters that govern the performance of a new Friction Damper Device (FDD) The device was designed to dissipate seismic input energy and protect buildings from

Seismic Response of Adjacent Buildings Connected with Friction Dampers

The effectiveness of passive energy dissipation systems to improve seismic performance of connected buildings is now well established through extensive analytical and experimental investigations.

Experimental and analytical study on pounding reduction of base‐isolated highway bridges using MR dampers

Pounding between adjacent superstructures has been a major cause of highway bridge damage in the past several earthquakes. This paper presents an experimental and analytical study on pounding