Experimental investigation on the performance of a neon cryogenic oscillating heat pipe

  • Qing Liang
  • , Yi Li
  • , Qiuliang Wang

Research output: Contribution to journalArticlepeer-review

38 Scopus citations

Abstract

An experimental investigation is conducted to study the performance of a cryogenic oscillating heat pipe (OHP) using neon as the working fluid. The stainless steel OHP with an inner diameter of 0.9 mm has 4 turns, and the lengths of the evaporator, condenser section and adiabatic section are 35 mm, 35 mm and 95 mm, respectively. The temperature of the evaporator and condenser and the pressure of the OHP are measured. The results show that the cooling down process of the OHP from room temperature to the working temperature can be significantly accelerated by charging with neon. During the pseudo steady-state operation process, the temperature of evaporator and the pressure of the OHP increase with increasing heat input. When the dry out appears, the temperature of evaporator rises quickly, and the pressure of the OHP drops sharply. In addition, the effective thermal conductivity of the OHP at the different heat inputs and the different filling ratios is calculated. It increases with increasing heat input, and there exists an optimum filling ratio which makes the maximum effective thermal conductivity. For this OHP, the optimum filling ratio is 24.5%, at which the effective thermal conductivity is 6100–22,180 W/m K.

Original languageEnglish
Pages (from-to)7-12
Number of pages6
JournalCryogenics
Volume84
DOIs
StatePublished - 1 Jun 2017

Keywords

  • Cryogenic
  • Neon
  • Oscillating heat pipe

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