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The helium distribution system is designed to distribute refrigeration to KSTAR cooling components such as 30 superconducting coils, magnet supporting structures, thermal shields, and current leads with a minimal temperature variation.
The EAST cryoplant consists of a 2 KW/4 K helium refrigerator and a helium distribution system.
This paper describes helium distribution system in the "Optimized Conservative" concept of Helium Cooled Lithium Lead (HCLL) BB, according to the HCLL 2014 Design Description Document.
The liquid helium distribution and vapor return system will be a parallel flow system from common trunk lines running parallel to the linac.
The first stage includes a 500 W helium refrigerator with associated compressors, oil removal system (ORS), helium buffer tank, helium dewar, room temperature piping, helium distribution transfer lines, and nitrogen distribution network.
The cryogenic system of EAST consists of a 2 KW/4 K helium refrigerator and a helium distribution system for the cooling of PF and TF coils, structures, thermal shields, buslines and the current leads.
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Cryogenic helium distributions can participate to the smoothing of pulsed loads and hence providing a stable interface with the refrigerator.
The helium flow distribution and control to different sub-systems is achieved by the integrated flow distribution and control (IFDC) system.
All these components have a very complex geometry, with many parallel cooling channels, involving a complex helium flow distribution.
Implantation with 65 keV He+ ions was performed at 277 °C, and the helium depth distribution was determined by elastic recoil detection analysis (ERDA).
By improving the helium gas distribution inside the regenerator at low temperatures, the cooling performance of the G-M refrigerator was obviously improved.
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