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. With properly designed connecting devices, PIP system therefore has the potential to mitigate the subsea pipeline vibrations induced by various sources, such as earthquake or vortex shedding. This study proposes using rotational friction hinge dampers with springs (RFHDSs) to connect the inner and outer pipes. The rotational friction hinge dampers (RFHDs) are used to absorb the energy induced by the external vibration sources and the springs are used to provide the stiffness to the TMD system and to restore the original locations of the inner and...
Although industrial piping systems and their components have been found highly vulnerable under eart...
Undesirable vibrations occurring in undersea pipeline structures due to ocean currents may shorten t...
A methodology is presented for assessing internal flow-induced vibrations (FIV) in subsea piping sys...
Pipe-In-Pipe (PIP) systems have been increasingly used in the subsea pipeline applications recently....
Pipe-in-pipe (PIP) systems are increasingly used in subsea pipeline applications due to their favour...
Pipe-in-pipe (PIP) systems have been increasingly used in offshore applications because of their fav...
Suspended piping systems often suffer from severe damages when subjected to seismic excitation. Due ...
© 2017 Elsevier Ltd This paper aims to propose a design of using the revised PIP system to control v...
Seismic loads on piping system due to earthquakes can cause excessive vibrations, which can lead to ...
The aim of the paper is to investigate the capability of the damper system in limiting the vibration...
In a vibrating system, the most effective mechanism to dissipate energy is the inelastic strain of s...
Prior to subsea installation, a subsea system has to be tested to verify whether it performs in acco...
This paper proposes using modified pipe-in-pipe (PIP) system to mitigate vortex induced vibration (V...
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...
Although industrial piping systems and their components have been found highly vulnerable under eart...
Undesirable vibrations occurring in undersea pipeline structures due to ocean currents may shorten t...
A methodology is presented for assessing internal flow-induced vibrations (FIV) in subsea piping sys...
Pipe-In-Pipe (PIP) systems have been increasingly used in the subsea pipeline applications recently....
Pipe-in-pipe (PIP) systems are increasingly used in subsea pipeline applications due to their favour...
Pipe-in-pipe (PIP) systems have been increasingly used in offshore applications because of their fav...
Suspended piping systems often suffer from severe damages when subjected to seismic excitation. Due ...
© 2017 Elsevier Ltd This paper aims to propose a design of using the revised PIP system to control v...
Seismic loads on piping system due to earthquakes can cause excessive vibrations, which can lead to ...
The aim of the paper is to investigate the capability of the damper system in limiting the vibration...
In a vibrating system, the most effective mechanism to dissipate energy is the inelastic strain of s...
Prior to subsea installation, a subsea system has to be tested to verify whether it performs in acco...
This paper proposes using modified pipe-in-pipe (PIP) system to mitigate vortex induced vibration (V...
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...
Although industrial piping systems and their components have been found highly vulnerable under eart...
Undesirable vibrations occurring in undersea pipeline structures due to ocean currents may shorten t...
A methodology is presented for assessing internal flow-induced vibrations (FIV) in subsea piping sys...