Cryogenic installation comprising a circulator
The invention concerns a circulator ( 2 ) for circulating a refrigerant fluid ( 4 ) in a circuit ( 6 ) of a cryogenic installation ( 1 ) from and to an element ( 3 ) having a thermal load, the circulator ( 2 ) including a drive module ( 8 a, 8 b ) and a pumping module ( 9 a, 9 b ) including a centrifugal wheel ( 10 ), said drive module ( 8 a, 8 b ) having a magnetic coupling ( 51 ) to said pumping module ( 9 a, 9 b ) in order to drive said centrifugal wheel ( 10 ) in a rotary movement.
1. A circulator for circulating a refrigerant fluid in a circuit of a cryogenic installation from and to an element having a thermal load, the circulator including:
a drive module including a magnetic stator, and
a pumping module including a magnetic rotor and a centrifugal wheel,
wherein the stator of the drive module is magnetically coupled to the rotor of the pumping module in order to drive the centrifugal wheel in a rotary movement, and
wherein the pumping module comprises an envelope defining a sealed, thermal loss-reducing enclosure containing a drive shaft of the centrifugal wheel, the envelope comprising a casing of the magnetic rotor and a volute casing,
wherein the magnetic stator of the drive module is arranged outside of the envelope of the pumping module so as to cooperate with the magnetic rotor arranged inside of the envelope.
2. The circulator according to claim 1 , wherein the pumping module comprises the drive shaft including the magnetic rotor and the centrifugal wheel at a first end.
3. The circulator according to claim 2 , wherein the pumping module comprises a bearing assembly supporting the drive shaft of the centrifugal wheel and comprising first and second bearings having rolling bodies.
4. The circulator according to claim 3 , wherein the magnetic rotor is arranged outside the first and second bearings having rolling bodies of the bearing assembly and mounted on the drive shaft of the centrifugal wheel.
5. The circulator according to claim 2 , wherein the magnetic stator is arranged around a circumference of all or part of the casing of the magnetic rotor.
6. The circulator according to claim 5 , wherein the magnetic stator and the magnetic rotor mounted on the drive shaft together form an electric motor.
7. The circulator according to claim 1 , wherein the pumping module comprises a bearing assembly supporting the drive shaft of the centrifugal wheel and comprising first and second bearings having rolling bodies.
8. The circulator according to claim 7 , wherein the magnetic rotor is arranged outside the first and second bearings having rolling bodies of the bearing assembly and mounted on the drive shaft of the centrifugal wheel.
9. The circulator according to claim 7 , wherein the first and second bearings are cryogenic bearings.
10. The circulator according to claim 1 , wherein the magnetic stator is arranged around a circumference of all or part of the casing of the magnetic rotor.
11. The circulator according to claim 10 , wherein the magnetic stator includes at least two electromagnets.
12. The circulator according to claim 10 , wherein the magnetic stator and the magnetic rotor mounted on the drive shaft together form an electric motor.
13. The circulator according to claim 12 , wherein the electric motor is a brushless synchronous electric motor.
14. The circulator according to claim 1 , wherein the circulator is a minicirculator.
15. A cryogenic installation for cooling an element having a thermal load, the installation comprising the circulator according to claim 1 configured for circulating a refrigerant fluid in a circuit of the cryogenic installation from and to the element.
16. The cryogenic installation according to claim 15 , wherein the installation comprises at least one cryogenic machine of pulsed gas tube type and a compression and control unit.
17. The cryogenic installation according to claim 15 , wherein the installation comprises a cryostat including an enclosure in which an insulating vacuum is maintained.
18. The cryogenic installation according to claim 17 , wherein the installation comprises at least one cryogenic machine of pulsed gas tube type and a compression and control unit, and wherein the cryostat comprises the circulator, the cryogenic machine and the circuit.
19. The cryogenic installation according to claim 15 , wherein the installation comprises a cold source, the circulator being mounted at a same level or at a same altitude as the cold source.
20. The cryogenic installation according to claim 19 , wherein the cold source is a cold end of a cryogenic machine of pulsed gas tube type, and wherein the centrifugal wheel is mounted at a same level or at a same altitude as the cold end of the cryogenic machine of pulsed gas tube type.