Nothing Special   »   [go: up one dir, main page]

Jeong et al., 2006 - Google Patents

Experimental investigation on the detachable thermosiphon for conduction-cooled superconducting magnets

Jeong et al., 2006

View PDF
Document ID
16154068207662188637
Author
Jeong S
Kim Y
Noh C
Kim S
Jin H
Publication year
Publication venue
Cryogenics

External Links

Snippet

A detachable thermosiphon, as a transient thermal switch for conduction-cooled superconducting magnet, is designed, fabricated and tested. A thermosiphon between the first and second stages of a cryocooler can reduce the cool-down time of a conduction …
Continue reading at www.academia.edu (PDF) (other versions)

Similar Documents

Publication Publication Date Title
JP4031121B2 (en) Cryostat equipment
US20070089432A1 (en) Cryostat configuration with cryocooler
US11035598B2 (en) Method and apparatus for cryogenic cooling of HTS devices immersed in liquid cryogen
Natsume et al. Heat transfer performance of cryogenic oscillating heat pipes for effective cooling of superconducting magnets
US7260941B2 (en) Superconductor device having superconductive magnet and refrigeration unit
KR20160030192A (en) Device for cooling a consumer with a super-cooled liquid in a cooling circuit
US20180051852A1 (en) Cryogen-free magnet system comprising a heat sink connected to the gas circuit of a cryocooler
US10228430B2 (en) Method for cryogenic cooling of an NMR detection system with the assistance of a container filled with a cryogenic fluid
Liang et al. Experimental investigation on the performance of a neon cryogenic oscillating heat pipe
JP6378039B2 (en) Superconducting magnet, MRI equipment, NMR equipment
Bonnet et al. Development and test of a cryogenic pulsating heat pipe and a pre-cooling system
JP4724063B2 (en) Cryogenic equipment
Hasegawa et al. High-precision temperature control and stabilization using a cryocooler
Mito et al. Development of highly effective cooling technology for a superconducting magnet using cryogenic OHP
JP2009246231A (en) Cryogenic cooling control apparatus and method of controlling the same
US10699829B2 (en) Cryogenics for HTS magnets
Jeong et al. Experimental investigation on the detachable thermosiphon for conduction-cooled superconducting magnets
Long et al. Experimental investigation of the heat transfer characteristics of a helium cryogenic thermosyphon
Lee et al. Experimental study on the double-evaporator thermosiphon for cooling HTS (high temperature superconductor) system
US20130263606A1 (en) Current lead device
US20090224862A1 (en) Magnetic apparatus and method
Chang et al. Cross-flow heat exchangers for anti-freezing of liquid nitrogen
JP6371881B1 (en) Gas cooling system
Stautner et al. A new cooling technology for the cooling of HTS magnets
JPH09106909A (en) Conductive cooling superconducting magnet