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Design and Validation of Closed Two-phase Thermosyphon Loop in Lunar Gravity Environment during China Lunar Project CE-4

  • Yuandong Guo
  • , Lu Wang*
  • , Jianyin Miao
  • , He Zhang
  • , Youwei Zhang
  • , Hongxing Zhang
  • , Jianxin Chen
  • , Yawei Xu
  • , Yalong Wang
  • , Jianfu Zhao
  • *Corresponding author for this work
  • China Aerospace Science and Technology Corporation
  • CAS - Institute of Mechanics
  • University of Chinese Academy of Sciences

Research output: Contribution to journalArticlepeer-review

Abstract

The structural design, heat transfer capability analysis, ground equivalent validation, and on-orbit flight of the two-phase fluid loop based on flat-plate evaporation module of the Chang’e-4 detector are introduced. Within the temperature range of -30 ℃ ~ -10 ℃, the designed two-phase fluid loop has a heat transfer capacity of greater than 200 W. An equivalent test prototype is designed and manufactured to examine the heat transfer performance of the two-phase fluid loop under the ground condition of 1 g. The driving force of the equivalent test prototype is less than that of the flight prototype, while the flow resistance is equivalent to that of the flight prototype. The test heat transfer capacity is smaller than that of the flight prototype on the lunar surface. According to the equivalent test prototype, the heat transfer capacity is no less than 130 W, which meets the requirements of Chang’e-4. During the 14-moon day-night cycle, the temperature of the two-phase fluid loop gradually decreased to an equilibrium value of -10 °C. During the wake-up process of the detector in moon day, the control valve was closed, and the temperature of the flat-plate evaporation module rose rapidly, indicating that the function of blocking heat transfer is normal.

Original languageEnglish
Article number38
JournalMicrogravity Science and Technology
Volume34
Issue number3
DOIs
StatePublished - Jun 2022

Keywords

  • Experiment
  • Gravity driven
  • Operating characteristics
  • Thermosyphon
  • Validation

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