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ECT imaging of thin liquid film in thermosyphons

  • S. Liu*
  • , Q. Chen
  • , J. Li
  • , X. Dong
  • , H. Wang
  • , W. Q. Yang
  • *Corresponding author for this work
  • CAS - Institute of Engineering Thermophysics
  • Beijing Jiaotong University
  • University of Manchester

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

Abstract

This paper reports for the first time the investigation into the measurement of the thickness of the liquid film in a two phase closed thermosyphon using electrical capacitance tomography (ECT). The main challenge is the spatial resolution for extremely thin film, in the order of 100 μm. For image reconstruction, the Linear Back Projection (LBP) algorithm and the Landweber iteration with the optimal step length are applied and the images reconstructed using the different algorithms are compared. It was found that the former is able to provide qualitative indications of the working conditions inside the thermosyphon, but unable to achieve sufficient spatial resolutions for the measurement of the film thickness. The Landweber iteration algorithm with the optimal step length is able to reconstruct high-resolution images with enhanced spatial resolution. The capability of ECT for measuring such thin film has been demonstrated. Experimental results are compared with the established theory, i.e. the Nusselt's equation, on the film thickness. The agreements with, and discrepancies between, the measured data and the theory are discussed.

Original languageEnglish
Title of host publication4th World Congress in Industrial Process Tomography
PublisherInternational Society for Industrial Process Tomography
Pages971-976
Number of pages6
ISBN (Electronic)9780853163206
StatePublished - 2005
Externally publishedYes
Event4th World Congress in Industrial Process Tomography - Aizu, Japan
Duration: 5 Sep 20055 Sep 2005

Publication series

Name4th World Congress in Industrial Process Tomography

Conference

Conference4th World Congress in Industrial Process Tomography
Country/TerritoryJapan
CityAizu
Period5/09/055/09/05

Keywords

  • Electrical capacitance tomography
  • Film thickness
  • Thermosyphon

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