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Experimental investigation on the start-up behaviors of a Joule–Thomson refrigeration system with pressure control

  • Xi'an Jiaotong University

Research output: Contribution to journalArticlepeer-review

9 Scopus citations

Abstract

The excessively high discharge pressure of mixture-based Joule–Thomson (J–T) refrigeration system for low-temperature freezers at the start-up process without active control leads to the reduction of operation reliability of compressors. Start-up characteristics of a J–T refrigeration system with an expansion tank for pressure control were investigated in this study. The binary mixture R1150/R600a was selected as the working fluid, and influences of the control pressure, compressor speed, throttle valve opening, and mixture concentration on the system's dynamic performances were experimentally explored. Results demonstrated that the discharge pressure could be effectively limited below the compressor's safety pressure with an expansion tank. Meanwhile, the close relationship between pull-down rate and time of the pressure control phase was associated with the control pressure, compressor speed, throttle valve opening, and mixture concentration. The pull-down rate can be accelerated by increasing the control pressure and throttle valve opening and reducing the compressor speed and the R1150 concentration at the start-up process. The excessively rich R1150 concentration caused the continuous action of the pressure switch and the malfunction of the low-temperature freezing at an acceptable time range. The build-up of the heat recuperation played a significant role in pressure control time and freezing temperature reduction rate.

Original languageEnglish
Article number118953
JournalApplied Thermal Engineering
Volume215
DOIs
StatePublished - Oct 2022

Keywords

  • Experimental investigation
  • Joule–Thomson refrigeration system
  • Low-temperature refrigeration
  • Pressure control
  • R1150/R600a

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