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Simultaneous temperature and velocity measurements based on novel fluid density-matched phosphorescent microspheres

  • 01-02-2025
  • Research Article
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Abstract

The article introduces a novel method for simultaneous temperature and velocity measurements in thermal fluids using density-matched phosphorescent microspheres. These microspheres, prepared through emulsification, closely match the density of the fluid, improving their followability and reducing settling velocity. The method enables high-precision, non-contact measurements of temperature and velocity fields, addressing the limitations of conventional methods. The microspheres are designed to be 50–100 µm in size, enhancing their signal-to-noise ratio and making them suitable for large-scale thermal fluid measurements. The article demonstrates the potential of this method through experiments, showing that the microspheres can effectively measure temperature and velocity in low-speed thermal fluids. The method holds broad application prospects for experiments in thermal fluids, particularly in engineering applications where precise temperature and velocity data are crucial.

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Title
Simultaneous temperature and velocity measurements based on novel fluid density-matched phosphorescent microspheres
Authors
Tao Cai
Di Luan
Ruiyu Fu
Yingzheng Liu
Di Peng
Weiwei Cai
Hong Liu
Publication date
01-02-2025
Publisher
Springer Berlin Heidelberg
Published in
Experiments in Fluids / Issue 2/2025
Print ISSN: 0723-4864
Electronic ISSN: 1432-1114
DOI
https://doi.org/10.1007/s00348-025-03965-7
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Image Credits
in-adhesives, MKVS, Ecoclean/© Ecoclean, Hellmich GmbH/© Hellmich GmbH, Krahn Ceramics/© Krahn Ceramics, Kisling AG/© Kisling AG, ECHTERHAGE HOLDING GMBH&CO.KG - VSE