Journal of Heat and Mass Transfer Research

Journal of Heat and Mass Transfer Research

 

Journal of Heat and Mass Transfer Research
ISO Abbreviation J. Heat Mass Transf. Res.
Start Publication 2013
Acceptance Rate 27%
Number of Volumes 13
Number of Issues 28
Number of Articles 299
Number of Contributors 719

Contributing Countries (Authors)

32

Contributing Countries (Reviewers)

36

Contributing Countries (Editorial/Advisory Board)

19
Number of Reviewers 451
Number of Indexing Databases 14
                   
Article View 437,896
PDF Download 263,203
View Per Article 1464.54
PDF Download Per Article 880.28

SCImago Journal & Country Rank


CiteScore Categories:

 

Mechanical Engineering

 

Fluid Flow and Transfer Processes

 

Condensed Matter Physics

The Journal of Heat and Mass Transfer Research is an international, bi-annual publication (both in print and online) established in 2013 by Semnan University Press. The journal disseminates cutting-edge and innovative research findings in the domain of heat and mass transfer. This encompasses various subfields including conduction, convection, radiation, phase change phenomena, heat exchanger design and testing, nuclear reactors, geothermal heat recovery, and alternative energy systems. Additionally, it covers emerging technologies such as Micro-Electro-Mechanical Systems (MEMS), micro-channels, fuel cells, bio- and nano-technology, transport in porous media, ice formation and melting, reactor design, microreactors, multiphase reactors, multiscale modeling, and gas-solid reactions, as well as heat transfer in machinery and welding operations.

The Journal encourages contributions that facilitate the exchange of ideas and foster scholarly dialogue between practitioners, educators, and researchers in Mechanical and Chemical Engineering globally. The journal’s scope includes peer-reviewed original research articles, technical reports, review papers, short communications, and editorial notes. It welcomes high-quality research papers and reviews on any aspect of heat and mass transfer, whether theoretical, numerical, or experimental. The journal is published in English, with accepted papers available online immediately and subsequently in print.

We are pleased to inform you that, following the recent approval of the Editorial Board and the relevant authorities, the publication frequency of the journal will change from Semiannual to Quarterly, effective January 2026. This decision is intended to enhance the journal’s scientific quality, expedite the publication process, and strengthen dynamic engagement among researchers and authors.

New Article Processing Charge (APC) Policy

In accordance with the publishing policy of Semnan University Press, an Article Processing Charge (APC) applies to all manuscripts accepted for publication in the Journal of Heat and Mass Transfer Research (JHMTR). For manuscripts submitted on or after August 1, 2026, the APC is 400 USD for non-Iranian corresponding authors and 20,000,000 IRR for Iranian corresponding authors. Please note that this fee applies only to manuscripts that successfully pass the peer-review process and are accepted for publication; there are no fees associated with initial submission or the review process.

The APC supports the various stages of the publishing workflow, including editorial handling, peer review, copyediting, typesetting, online hosting, and long-term digital archiving. These charges enable the journal to maintain high scholarly standards and ensure the broad dissemination and accessibility of published research to the international scientific community. Partial or full APC waivers may be granted upon request by the corresponding author and are subject to the approval of the Editorial Board. To apply for a waiver, please direct your request to: samanrashidi@semnan.ac.ir

Member of COPE

COPE We are pleased to announce that the application for COPE  membership of the Journal of Heat and Mass Transfer Research has been accepted on July, 2024.

https://members.publicationethics.org/members/journal-heat-and-mass-transfer-research

 

Journal of Heat and Mass Transfer Research (JHMTR) utilizes "Plagiarism Detection Software (iThenticate)" for checking the originality of submitted manuscripts in the reviewing process.

Keywords Cloud

  • Heat transfer
  • Nanofluid
  • Mixed convection
  • Nusselt number
  • Pressure drop
  • Nanofluids
  • Entropy Generation
  • turbulent flow
  • Magnetic field
  • chemical reaction
  • convective heat transfer
  • viscous dissipation
  • Thermal conductivity
  • Heat and mass transfer
  • Natural convection
  • Porous medium
  • heat transfer enhancement
  • Free convection
  • MHD
  • CFD
  • Lattice Boltzmann method
  • Heat exchanger
  • Temperature
  • porous media
  • Numerical simulation
  • heat transfer coefficient
  • Baffle
  • couple stress fluid
  • radiation
  • Unsteady Flow
  • thermal radiation
  • friction factor
  • OpenFOAM
  • Non-Newtonian fluid
  • Overall heat transfer coefficient
  • emissions
  • Phase change material
  • Magnetohydrodynamic
  • Variable viscosity
  • Fluid flow
  • Variable thermal conductivity
  • Radiation absorption
  • Soret and Dufour effects
  • Boundary Layer
  • Variable properties
  • Experimental Study
  • Heat source
  • modeling
  • Shell and tube heat exchanger
  • Nanoparticles
  • Laminar flow
  • Ferrofluid
  • Conjugate heat transfer
  • viscosity
  • Casson fluid
  • finite element method
  • Stretching Sheet
  • Casson nanofluid
  • Computational fluid dynamics (CFD)
  • Economic analysis
  • Entropy
  • Diesel Engine
  • Flow characteristics
  • Forced convection
  • Hydrogen
  • Numerical modeling
  • Response surface methodology
  • Double pipe heat exchanger
  • Magnetic hyperthermia
  • Wavy channel
  • Convection
  • Genetic algorithm
  • Parameter estimation
  • Film cooling
  • Constant Heat Flux
  • Nano-fluid
  • Brownian motion
  • Hybrid nanofluid
  • Optimization
  • cooling effectiveness
  • Mathematical model
  • hybrid nanofluids
  • Thermophoresis
  • Heat flux
  • Solar Radiation
  • Permeable wall
  • thermodynamics
  • Lattice Boltzmann
  • Effectiveness
  • Water harvesting
  • thermal performance
  • Resistance to Flow
  • Contact angle
  • separation
  • Bejan number
  • Combustion
  • Drying
  • Channel
  • Runge-Kutta method
  • Solar still
  • Silica gel
  • Turbulent forced convection
  • Thermal comfort
  • Dufour effect
  • thermal enhancement
  • gas turbine
  • Cooling load
  • Finite element analysis
  • Curvature ratio
  • Slip flow
  • Vertical plate
  • Adsorption
  • thermal efficiency
  • amplitude
  • Mass transfer coefficient
  • Double-diffusive convection
  • Jet Impingement
  • Peritoneal metastasis
  • Dean number
  • Exergy
  • Aspect Ratio
  • Hall current
  • Finite difference method
  • Micropolar fluid
  • Thermophysical properties
  • Computer simulation
  • Vortex generators
  • turbulence
  • wall temperature
  • Least Square method (LSM)
  • machine learning
  • Wall shear stress
  • pulse frequency
  • Heat generation
  • transition
  • Heat transfer augmentation
  • Biodiesel
  • Microchannel
  • Concave surface
  • exergy efficiency
  • performance
  • Nanoparticle shape
  • Hyperthermia
  • Convective heat transfer enhancement
  • Perturbation Method
  • artificial roughness
  • Cooling system
  • Energy
  • Perturbation
  • Mass transfer
  • Gas-Particle flow
  • Flow Pattern
  • Desalination
  • Homotopy Analysis Method
  • PEMFC
  • magnetic nanoparticles
  • Oven
  • Fuel/lubricant additives
  • Electric current
  • airflow
  • CI engine
  • pandemic infection
  • Linear regression model
  • Bingham plastic
  • Shear Stress
  • coupled integral equations approach
  • Moving wall, Merck-Chao
  • Dehumidification
  • Therml Convection
  • Vapor explosion
  • Lowrance invariant
  • agri-residues
  • Circular sector
  • shooting technique
  • Photovoltaic
  • Deep learning
  • string cavitation
  • dynamic water circulation rate
  • MATLAB
  • Cavity
  • Nu
  • Double-tube heat exchanger
  • Toluene additive
  • Vortex Roll
  • resuspension
  • Nickel
  • Enviromental analysis
  • Radiation effects
  • Deposition
  • Channels
  • Markov chains
  • Volume of Fluid
  • distribution coefficient
  • thermoelectric
  • MHD fluid flow
  • Solar stills
  • Exergy evaluation
  • Mini-Channel Heatsink
  • wave rotor refrigerator
  • Pressure drop optimization