EP0720719B1

Method and apparatus for convectively cooling a superconducting magnet

Abstract

This record has no abstract on file.

EP0720719B1, drawing sheet 1
Sheet 1 of 6

Term

Term ended

Expired 23 September 2014, 12 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

10 claims: 2 independent, 8 dependent

  1. 1
    A method of cooling a device such as a superconducting magnet(11), using a cooling loop (13,154) including a refrigerator (24,156), down comer tube (44,162), at least one riser tube (68, 152), a cold heat station (30,30"'), an upper header tube (74,168) and a lower header tube (52,164), comprising the steps:(a) circulating cryogenic gas through said cold heat station (30,30''') having an upper end thermally connected to said refrigerator (24,156) for cooling said gas, said refrigerator having a lower end connected with said down comer tube (44,162);(b) circulating said cryogenic gas from said down comer tube (44,162) through said lower header tube (52,164) at a level below said device and into said at least one riser tube (68,152) that is in close thermal contact with said device, said cryogenic gas in said at least one riser tube absorbing heat from said device and rising by natural convection;and (c) circulating said cryogenic gas from said at least one riser tube (68,152) into said upper header tube (74,168) that leads back to said upper end of said cold heat station (30,30',30'''),    said circulating in steps (a) - (c) being the result of natural convection induced by heat exchange in said at least one riser tube (68,152) wherein said cryogenic gas has a pressure of about 1 MPa to about 3 MPa.
  2. 4
    A system for cooling a device such as a superconducting magnet (11), comprising:refrigerator means for cooling a cryogenic gas to a temperature below an operating temperature of said device;a down comer tube (44,162) connected to said refrigerator means for directing said cryogenic gas, after being cooled by said refrigerator means, to a lower header tube (52,164) at a location below said device;at least one riser tube (68,152) for flow of said cryogenic gas therein connecting said lower header tube (52,164) to an upper header tube (74,168) positioned at a location generally above said device, said riser tube (68,152) being in thermal contact with said device to cool said device by warming and expanding said cryogenic gas;and said upper header tube (74,168) being connected to an inlet of said refrigerator means and directing said warmed cryogenic gas to said refrigerator means for cooling, and again into said down comer tube (44,162), movement of said cryogenic gas being effected by natural convection, wherein said cryogenic gas has a pressure of about 1 MPa to about 3 MPa.