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Fingerprint Fingerprint is based on mining the text of the person's scientific documents to create an index of weighted terms, which defines the key subjects of each individual researcher.

  • 6 Similar Profiles
Refrigerators Engineering & Materials Science
refrigerators Physics & Astronomy
Air conditioning Engineering & Materials Science
desiccants Physics & Astronomy
Mass transfer Engineering & Materials Science
heat pumps Physics & Astronomy
air conditioning Physics & Astronomy
Temperature Engineering & Materials Science

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Research Output 1994 2019

  • 471 Citations
  • 12 h-Index
  • 55 Article
  • 19 Conference contribution
  • 1 Paper
  • 1 Conference article
Plant expansion
Heat pump systems
Numerical analysis
Flow of fluids

Parametric study and multi-objective optimization of vapor compression heat pump system by using environmental friendly refrigerant

Aisyah, N., Idrus Alhamid, M., Nasruddin, Sholahuddin, Arnas, A. & Saito, K., 2019 Feb 1, In : Journal of Advanced Research in Fluid Mechanics and Thermal Sciences. 54, 1, p. 44-56 13 p.

Research output: Contribution to journalArticle

Heat pump systems
Multiobjective optimization

Performance and application of combined system of liquid desiccant and R718 centrifugal heat pump

Yabase, H., Yamaguchi, S., Saito, K., Hasuike, H., Sakamoto, H., Matsumoto, S. & Harada, M., 2019 Jan 25, 10th International Meeting of Advances in Thermofluids, IMAT 2018 - Smart City: Advances in Thermofluid Technology in Tropical Urban Development. Yatim, A., Nasruddin, Budiyanto, M. A., Aisyah, N. & Alhamid, M. I. (eds.). American Institute of Physics Inc., Vol. 2062. 020060

Research output: Chapter in Book/Report/Conference proceedingConference contribution

heat pumps
air conditioning
5 Citations (Scopus)

Annular flow stability within small-sized channels

Giannetti, N., Kunita, D., Yamaguchi, S. & Saito, K., 2018 Jan 1, In : International Journal of Heat and Mass Transfer. 116, p. 1153-1162 10 p.

Research output: Contribution to journalArticle

annular flow
flow stability
Surface tension
interfacial tension
Void fraction
1 Citation (Scopus)
Differential equations