World's Best Scientists 2026 revealed!

D-Index & Metrics

Mechanical and Aerospace Engineering

D-Index
42
Citations
6477
World Ranking
1841
National Ranking
77

Research.com Recognitions

  • 2015 - Fellow of the American Society of Mechanical Engineers

Overview

Yuri S. Muzychka is affiliated with Memorial University of Newfoundland in Canada and has a research profile primarily focused on engineering. Their work spans over 100 publications in fields such as Computational Mechanics, Mechanical Engineering, Aerospace Engineering, Biomedical Engineering, and Electrical and Electronic Engineering.

The scientist's research covers a range of topics including:

  • Innovative Microfluidic and Catalytic Techniques Innovation
  • Heat Transfer and Boiling Studies
  • Fluid Dynamics and Thin Films
  • Fluid Dynamics and Turbulent Flows
  • Fluid Dynamics and Heat Transfer
  • Adhesion, Friction, and Surface Interactions
  • Heat Transfer and Optimization

Yuri S. Muzychka has contributed to several journals repeatedly, indicating sustained research output in specialized venues. Frequent publication outlets include:

  • International Journal of Heat and Mass Transfer
  • Journal of Fluid Flow Heat and Mass Transfer
  • The Canadian Journal of Chemical Engineering
  • ASME Journal of Heat and Mass Transfer
  • International Journal of Thermal Sciences

Some recent papers co-authored by Muzychka include:

  • A Review on the Hydrodynamics of Taylor Flow in Microchannels: Experimental and Computational Studies (2021) in Processes
  • Liquid film thickness of two-phase slug flows in capillary microchannels: A review paper (2021) in The Canadian Journal of Chemical Engineering
  • Flow visualization: state-of-the-art development of micro-particle image velocimetry (2022) in Measurement Science and Technology
  • Drag reduction by linear flexible polymers and its degradation in turbulent flow: A phenomenological explanation from chemical thermodynamics and kinetics (2020) in Physics of Fluids
  • Experimental and Theoretical Modelling of Concentrating Photovoltaic Thermal System with Ge-Based Multi-Junction Solar Cells (2022) in Energies

The scientist has also co-authored frequently with colleagues including M. M. Yovanovich, Amin Etminan, Kevin Pope, Xili Duan, and Baafour Nyantekyi-Kwakye.

In addition to journal articles, Yuri S. Muzychka has published a book titled Thermal Spreading and Contact Resistance: Fundamentals and Applications in 2023, made available through ASME eBooks. This contribution adds to their body of work in thermal sciences.

Recognition in their field includes being named a Fellow of the American Society of Mechanical Engineers in 2015.

Best Publications

  • Laminar Forced Convection Heat Transfer in the Combined Entry Region of Non-Circular Ducts

    Y. S. Muzychka;M. M. Yovanovich

  • Effective property models for homogeneous two-phase flows

    M.M. Awad;Y.S. Muzychka

  • Thermal Spreading Resistance of Eccentric Heat Sources on Rectangular Flux Channels

    Y. S. Muzychka;J. R. Culham;M. M. Yovanovich

  • Spreading Resistance of Isoflux Rectangles and Strips on Compound Flux Channels

    M. M. Yovanovich;Y. S. Muzychka;J. R. Culham

  • Pressure Drop in Laminar Developing Flow in Noncircular Ducts: A Scaling and Modeling Approach

    Y. S. Muzychka;M. M. Yovanovich

  • A review on numerical studies of slug flow hydrodynamics and heat transfer in microtubes and microchannels

    V. Talimi;Y.S. Muzychka;S. Kocabiyik

  • Constructal design of forced convection cooled microchannel heat sinks and heat exchangers

    Y.S. Muzychka

  • A new approach to investigate hydrate deposition in gas-dominated flowlines

    Esam Jassim;M. Abedinzadegan Abdi;Y. Muzychka

  • Computational Fluid Dynamics Study for Flow of Natural Gas through High-pressure Supersonic Nozzles: Part 1. Real Gas Effects and Shockwave

    E. Jassim;M. Abedinzadegan Abdi;Y. Muzychka

  • Slip flow in non-circular microchannels

    Unknown

  • Heat transfer model for gas–liquid slug flows under constant flux

    Patrick A. Walsh;Edmond J. Walsh;Yuri S. Muzychka

  • Thermal spreading resistance in compound and orthotropic systems

    Y. S. Muzychka;M.M. Yovanovich;J.R. Culham

  • Thermal Resistance Models for Non-Circular Moving Heat Sources on a Half Space

    Y. S. Muzychka;M. M. Yovanovich

  • Slip flow in elliptic microchannels

    Zhipeng Duan;Y.S. Muzychka

  • Thermal Spreading Resistance and Heat Source Temperature in Compound Orthotropic Systems With Interfacial Resistance

    Yuri S. Muzychka;Kevin R. Bagnall;Evelyn N. Wang

  • Computational Fluid Dynamics Study for Flow of Natural Gas through High-pressure Supersonic Nozzles: Part 2. Nozzle Geometry and Vorticity

    E. Jassim;M. Abedinzadegan Abdi;Y. Muzychka

  • Analytical Solution for Temperature Rise in Complex Multilayer Structures With Discrete Heat Sources

    Kevin R. Bagnall;Yuri S. Muzychka;Evelyn N. Wang

  • Modeling friction factors in non-circular ducts for developing laminar flow

    Y. Muzychka;M. Yovanovich

  • A Review of Heat Transfer and Pressure Drop Correlations for Laminar Flow in Curved Circular Ducts

    Mehdi Ghobadi;Yuri Stephan Muzychka

  • Pressure drop in two phase slug/bubble flows in mini scale capillaries

    Ed Walsh;Yuri Muzychka;Yuri Muzychka;Patrick Walsh;Vanessa Egan

  • Sea spray icing phenomena on marine vessels and offshore structures: Review and formulation

    A.R. Dehghani-Sanij;S.R. Dehghani;G.F. Naterer;Y.S. Muzychka

  • Slip Flow in the Hydrodynamic Entrance Region of Circular and Noncircular Microchannels

    Zhipeng Duan;Y. S. Muzychka

Frequent Co-Authors

M. Michael Yovanovich
M. Michael Yovanovich University of Waterloo
Greg F. Naterer
Greg F. Naterer University of Prince Edward Island
J. R. Culham
J. R. Culham University of Waterloo
Wan Ki Chow
Wan Ki Chow Hong Kong Polytechnic University
Sushanta K. Mitra
Sushanta K. Mitra University of Waterloo
Norbert Kockmann
Norbert Kockmann TU Dortmund University
Giulio Lorenzini
Giulio Lorenzini University of Parma
Ali Beskok
Ali Beskok Southern Methodist University
Michael R. King
Michael R. King Vanderbilt University

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