The cool-down behaviour of miniature Joule-Thomson (J-T) cryocooler with distributed J-T effect and finite reservoir capacity

Journal Title
Journal ISSN
Volume Title
Author
Guide
Date of Issue
Oct-15
Type
Article
Guide
Subject Keywords
Barcode
Class number
Abstract
The objective of this work is to study the effect of the reservoir pressure and Vol. on the cool-down behaviour of a miniature Joule-Thomson (J-T) cryocooler considering the distributed J-T effect. As the supply pressure to the J-T cooler reduces in case of a reservoir with finite capacity, the Vol. and the initial pressure of the reservoir are crucial for the operation of the cryocooler. These parameters affect the cool down time, cooling effect and the time for which the cooling effect is obtained at the required cryogenic temperature. A one dimensional transient model is formulated for the fluid streams and the solid elements of the recuperative heat exchanger of the cryocooler. Argon gas is used as the working fluid and its physical properties are evaluated at the local conditions of temperature and pressure. Cases with different reservoir capacities and pressures are worked out to study their effect on the transient behaviour of the cryocooler.
Identifier URL
Pages
47-54p.
Faculty
Faculty of Technology
Citation
Source URL
Keywords
J-T cryocooler Cool-down Reservoir capacity Heat-exchanger
DOI
10.1016/j.cryogenics.2015.05.006
ISBN
Place of Publication
Publication Year
Edition
Provider
ISSN Number
OTHER
Volume Number
Issue Number
Journal Name
Publication
Elsevier