Transparent cryogenic thermosiphon using N2 and CF4 mixture as the working fluid
Ji-Sung Lee, Sangkwon Jeong, Junseok Ko, Youngkwon Kim, Se-Yong Jung, Young-Hee Han
Abstract
Ji-Sung Lee, Sangkwon Jeong, Junseok Ko, Youngkwon Kim, Se-Yong Jung, Young-Hee Han
Abstract
A mixed working fluid has a potential to widen the operation temperature range of the thermosiphon. In this study, the thermosiphon using mixture as the working fluid is fabricated and tested to verify its transient thermo hydraulic characteristic. A transparent pyrex glass tube was used for the thermosiphon itself and the vacuum chamber was also fabricated by glass to visualize the internal state of thermo siphon. Onset of condensation temperature was related to the partial pressure of . Two solidifications were observed and condensate temperature range of mixed working fluid was from 160K to 70.7K with 25% composition.
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A mixed working fluid has a potential to widen the operation temperature range of the thermosiphon. In this study, the thermosiphon using mixture as the working fluid is fabricated and tested to verify its transient thermo hydraulic characteristic. A transparent pyrex glass tube was used for the thermosiphon itself and the vacuum chamber was also fabricated by glass to visualize the internal state of thermo siphon. Onset of condensation temperature was related to the partial pressure of . Two solidifications were observed and condensate temperature range of mixed working fluid was from 160K to 70.7K with 25% composition.
Key concepts: Thermosiphon, Working fluid, Materials science, Condensation, Heat pipe, Thermodynamics, Heat transfer, Physics