In a vibrating system, the most effective mechanism to dissipate energy is the inelastic strain of supplemental metallic elements with plastic deforming characteristics. An X-plate damper (XPD) is one device that is capable of sustaining many cycles of stable yielding deformation resulting in a high level of energy dissipation or damping. The present paper focuses on a numerical study to investigate the seismic effectiveness of an XPD for piping systems in industrial units (e.g. chemical and petrochemical industries) and utilities such as thermal and nuclear power plants. The seismic performance of piping systems is investigated under important parametric variations of the damper properties (i.e. height, width and thickness of the XPD) unde...
Assessment of seismic vulnerability of industrial petrochemical and oil & gas piping systems can be ...
Pipe-In-Pipe (PIP) systems have been increasingly used in the subsea pipeline applications recently....
This paper deals with the applicability of seismic passive control in major-hazard chemical installa...
Seismic loads on piping system due to earthquakes can cause excessive vibrations, which can lead to ...
Generally the piping system of a nuclear power plant (NPP) has to be designed for normal loads such ...
This report deals with the seismic response behavior of piping systems in industrial facilities such...
Piping systems, a vital part of energy industries, e.g. petrochemical, oil & gas and chemical plants...
Although industrial piping systems and their components have been found highly vulnerable under eart...
Pipe-in-pipe (PIP) system can be considered as a structure-tuned mass damper (TMD) system by replaci...
Suspended piping systems often suffer from severe damages when subjected to seismic excitation. Due ...
The design of supporting systems for pipelines carrying highly toxic or radioactive liquids at very...
A significant number of damages in piping systems and components during recent seismic events have b...
Piping systems represent a vital part of energy industries, e.g. petrochemical, oil & gas and chemic...
The damping coefficients and ratios of piping system snubber supports were found to vary logarithmic...
Installation of friction devices between a piping system and its supporting medium is an effective w...
Assessment of seismic vulnerability of industrial petrochemical and oil & gas piping systems can be ...
Pipe-In-Pipe (PIP) systems have been increasingly used in the subsea pipeline applications recently....
This paper deals with the applicability of seismic passive control in major-hazard chemical installa...
Seismic loads on piping system due to earthquakes can cause excessive vibrations, which can lead to ...
Generally the piping system of a nuclear power plant (NPP) has to be designed for normal loads such ...
This report deals with the seismic response behavior of piping systems in industrial facilities such...
Piping systems, a vital part of energy industries, e.g. petrochemical, oil & gas and chemical plants...
Although industrial piping systems and their components have been found highly vulnerable under eart...
Pipe-in-pipe (PIP) system can be considered as a structure-tuned mass damper (TMD) system by replaci...
Suspended piping systems often suffer from severe damages when subjected to seismic excitation. Due ...
The design of supporting systems for pipelines carrying highly toxic or radioactive liquids at very...
A significant number of damages in piping systems and components during recent seismic events have b...
Piping systems represent a vital part of energy industries, e.g. petrochemical, oil & gas and chemic...
The damping coefficients and ratios of piping system snubber supports were found to vary logarithmic...
Installation of friction devices between a piping system and its supporting medium is an effective w...
Assessment of seismic vulnerability of industrial petrochemical and oil & gas piping systems can be ...
Pipe-In-Pipe (PIP) systems have been increasingly used in the subsea pipeline applications recently....
This paper deals with the applicability of seismic passive control in major-hazard chemical installa...