The displacement from the assemble position of several interfaces of JT-60SA cryogenic pipe system reaches to 38 mm due to the thermal contraction and electro-magnetic force of superconducting coils. The mechanical stress on the pipe or pipe support structure by the displacement difference between interfaces is critical issue to be solved. A design concept to avoid the stress concentration on the cryogenic pipe system is bending pipe without conventional flexible tubes. In order to determine the design of the system, thermal mechanical analyses have been conducted by a finite element method software ANSYS®. As results of analyses, it is confirmed that the final design of the system withstands the displacement and load due to the thermal con...
AbstractNew cryogenic pipes were designed for the superconducting DC power transmission systems cons...
Cryogenic process pipelines are part of the basic subsystem used in installations for fundamental re...
The Large Helical Device has the world's largest class cryogenic structure to support huge elec...
JT-60SA is a tokamak device using superconducting coils to be built in Japan, as a joint internation...
JT-60SA is a fusion experiment tokamak device with supercon-ducting magnets to be built in Japan. As...
One of the critical factors in the design of a cryogenic tank is the method of suspending the inner ...
The cryogenic lines GHE and LN2 contain two lines each, one for supply and the other for return. The...
The stresses developed in the solenoid and VLPC transfer lines have been investigated with the PipeP...
Cold bending, warm bending (bending with local heating) and induction bending are three manufacturin...
The thermal shield (TS) of JT-60SA which is a superconducting tokamak, is installed to reduce radiat...
The support system is designed to support the gravitational, magnetic, and thermal contraction loads...
This engineering note documents the thermal contraction analysis that was done for the D-Zero soleno...
The construction of a full-superconducting tokamak referred as JT-60 Super Advanced (JT-60SA) is in ...
In cryogenic stages of ISRO, Liquid Hydrogen (LH2) is used as fuel and Liquid Oxygen (LOX) is used a...
The final design of coil terminal boxes (CTBs) and superconducting feeders for the superconducting m...
AbstractNew cryogenic pipes were designed for the superconducting DC power transmission systems cons...
Cryogenic process pipelines are part of the basic subsystem used in installations for fundamental re...
The Large Helical Device has the world's largest class cryogenic structure to support huge elec...
JT-60SA is a tokamak device using superconducting coils to be built in Japan, as a joint internation...
JT-60SA is a fusion experiment tokamak device with supercon-ducting magnets to be built in Japan. As...
One of the critical factors in the design of a cryogenic tank is the method of suspending the inner ...
The cryogenic lines GHE and LN2 contain two lines each, one for supply and the other for return. The...
The stresses developed in the solenoid and VLPC transfer lines have been investigated with the PipeP...
Cold bending, warm bending (bending with local heating) and induction bending are three manufacturin...
The thermal shield (TS) of JT-60SA which is a superconducting tokamak, is installed to reduce radiat...
The support system is designed to support the gravitational, magnetic, and thermal contraction loads...
This engineering note documents the thermal contraction analysis that was done for the D-Zero soleno...
The construction of a full-superconducting tokamak referred as JT-60 Super Advanced (JT-60SA) is in ...
In cryogenic stages of ISRO, Liquid Hydrogen (LH2) is used as fuel and Liquid Oxygen (LOX) is used a...
The final design of coil terminal boxes (CTBs) and superconducting feeders for the superconducting m...
AbstractNew cryogenic pipes were designed for the superconducting DC power transmission systems cons...
Cryogenic process pipelines are part of the basic subsystem used in installations for fundamental re...
The Large Helical Device has the world's largest class cryogenic structure to support huge elec...