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Experimental study on heat transfer of aviation kerosene in a vertical upward tube at supercritical pressures

  • Dan Huang
  • , Bo Ruan
  • , Xiaoyu Wu
  • , Wei Zhang
  • , Guoqiang Xu
  • , Zhi Tao
  • , Peixue Jiang
  • , Lianxiang Ma
  • , Wei Li*
  • *Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

Abstract

A research on the heat transfer performance of kerosene flowing in a vertical upward tube at supercritical pressure is presented. In the experiments, insights are offered on the effects of the factors such as mass flux, heat flux, and pressure. It is found that increasing mass flux reduces the wall temperature and separates the experimental section into three different parts, while increasing working pressure deteriorates heat transfer. The extended corresponding-state principle can be used for evaluating density and transport properties of kerosene, including its viscosity and thermal conductivity, at different temperatures and pressures under supercritical conditions. For getting the heat capacity, a Soave-Redlich-Kwong (SRK) equation of state is used. The correlation for predicting heat transfer of kerosene at supercritical pressure is established and shows good agreement with the experimental data.

Original languageEnglish
Pages (from-to)425-434
Number of pages10
JournalChinese Journal of Chemical Engineering
Volume23
Issue number2
DOIs
StatePublished - 1 Feb 2015

Keywords

  • Heat transfer
  • Kerosene
  • Supercritical pressure

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