JFFHMT is high quality peer-reviewed journal, where every article will be peer-reviewed by several experts in the field. Upon acceptance, articles will be published in the latest open volume. One continuous volume per year is published.

In celebration of the 10th anniversary of International ASET, Inc., of which Avestia Publishing is a division, we are pleased to announce a reduced publication cost for JFFHMT. From September 2019 until September 2020, all articles received during this period will be published at a reduced fee of $300 CAD (plus provincial taxes applied for Canadian residents; non-Canadian residents are exempted). To submit your article, please visit: https://amss.avestia.com

JFFHMT welcomes research and review papers related to Fluid Flow, Heat and Mass Transfer, and Transport Phenomena including but not limited to the areas of:

  • Boiling and Condensation
  • Boundary Layer Theory and Applications
  • CFD
  • Combustion
  • Conduction, Convection, and Radiation Heat Transfer
  • Drying
  • Fluid Flow, Heat and Mass Transfer Equipment
  • Fuel Cells
  • Heat Transfer Enhancement Methods
  • Laminar and Turbulent Flows
  • Nanofluid Flow
  • Non-Newtonian Flow and Heat Transfer

For a complete list of topics, please visit: Aims & Scopes

Indexed in: Google Scholar, CAS, Genamics JournalSeek, Mendeley
Archived in Portico, one of the largest community-supported digital archives in the world
Content Registered with Crossref
A proud member of the Committee on Publication Ethics (COPE)

Recent News


We are pleased to announce that the Journal of Fluid Flow, Heat and Mass Transfer (JFFHMT) has been approved by the Committee on Publication Ethics (COPE). JFFHMT has been working hard to abide by the guidelines of ethics, integrity, and high standards in publishing.


JFFHMT is now permanently archived in Portico (one of the largest community-supported digital archives in the world). You can find more information here: Portico.

Most Recent Articles

Water extraction from air via passive plate condensation: potential and limitations

Maryam Babaei, Seyed Gholamreza Etemad, Masoud Haghshenasfard, Boguslaw Kruczek, Eliana Jara Morante, Jules Thibault

Solid-Liquid Phase Change in the Presence of Gas Phase: Numerical Modeling and Validation

Ravi Govindram Kewalramani, Sebastian Pose, Ingo Riehl, Tobias Fieback

Numerical Study of Patient Respiration Effect on Bacterial Dispersion in a Surgery Room

Alireza Khademi, Mohammad Hassan Saidi, Masoud Darbandi, Gerry E. Schneider

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