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D-Index & Metrics

Engineering and Technology

D-Index
48
Citations
8789
World Ranking
4570
National Ranking
303

Overview

Michael J. Hounslow is affiliated with the University of Sheffield in the United Kingdom. Their research primarily focuses on topics related to engineering and agricultural and biological sciences.

Their work covers several specialized fields, including computational mechanics, food science, and mechanical engineering. The main topics explored by Michael J. Hounslow are:

  • Granular flow and fluidized beds
  • Microencapsulation and drying processes
  • Proteins in food systems
  • Cyclone separators and fluid dynamics
  • Mineral processing and grinding

Among their recent publications are:

  • Tracking of powder lump formation and dispersion with the use of FBRM technology and video recordings, 2020, Powder Technology
  • Fluidized bed: Online monitoring of particle temperature using a thermal camera, 2020, Process Safety and Environmental Protection

Michael J. Hounslow has frequently published in the following venues:

  • Powder Technology
  • Process Safety and Environmental Protection

Collaborations with other researchers have been an aspect of their work. Frequent co-authors include:

  • Agba D. Salman
  • W. Robert Mitchell
  • Laurent Forny
  • Tim O. Althaus
  • Gerhard Niederreiter

This profile reflects a body of work spanning multiple research topics and collaborations within engineering and related scientific disciplines, with a particular emphasis on granular flow dynamics and particle processing technologies.

Best Publications

  • A discretized population balance for nucleation, growth, and aggregation

    M. J. Hounslow;R. L. Ryall;V. R. Marshall

  • Adjustable discretized population balance for growth and aggregation

    J. D. Lister;D. J. Smit;M. J. Hounslow

  • A discretized population balance for continuous systems at steady state

    Michael J. Hounslow

  • An investigation into the kinetics of liquid distribution and growth in high shear mixer agglomeration

    Unknown

  • Twin screw wet granulation: Granule properties

    Ranjit M. Dhenge;Richard S. Fyles;James J. Cartwright;David G. Doughty

  • Breakage in granulation: A review

    G.K. Reynolds;J.S. Fu;Y.S. Cheong;M.J. Hounslow

  • Finite-element methods for steady-state population balance equations

    M. Nicmanis;M. J. Hounslow

  • An experimental investigation of particle fragmentation using single particle impact studies

    A.D Salman;C.A Biggs;J Fu;I Angyal

  • Tracer studies of high‐shear granulation: II. Population balance modeling

    M. J. Hounslow;J. M. K. Pearson;T. Instone

  • Aggregation during Precipitation from Solution: A Method for Extracting Rates from Experimental Data

    Allan S. Bramley;Michael J. Hounslow;Rosemary L. Ryall

  • Kinetics of fluidised bed melt granulation I: The effect of process variables

    H.S. Tan;A.D. Salman;M.J. Hounslow

  • The coefficient of restitution of different representative types of granules

    Chirangano Mangwandi;Y.S. Cheong;M.J. Adams;M.J. Hounslow

  • Twin screw granulation using conveying screws: Effects of viscosity of granulation liquids and flow of powders

    Ranjit M. Dhenge;Kimiaki Washino;James J. Cartwright;Michael J. Hounslow

  • DIRECT EVIDENCE OF HETEROGENEITY DURING HIGH-SHEAR GRANULATION

    Unknown

  • Twin screw wet granulation: Effects of properties of granulation liquid

    Ranjit M. Dhenge;James J. Cartwright;Michael J. Hounslow;Agba D. Salman

  • A micro-mechanical model for the rate of aggregation during precipitation from solution

    M.J Hounslow;H.S Mumtaz;A.P Collier;J.P Barrick

  • Growth and aggregation of vaterite in seeded-batch experiments

    Jens-P. Andreassen;M. J. Hounslow

  • Twin screw wet granulation: Effect of powder feed rate

    Ranjit M. Dhenge;James J. Cartwright;David G. Doughty;Michael J. Hounslow

  • The Population Balance as a Tool for Understanding Particle Rate Processes

    Michael Hounslow

  • Twin screw granulation: steps in granule growth.

    Ranjit M. Dhenge;James J. Cartwright;Michael J. Hounslow;Agba D. Salman

  • Impact breakage of fertiliser granules

    A.D Salman;J Fu;D.A Gorham;M.J Hounslow

  • Modelling droplet size distributions in polydispersed wet-steam flows

    A.J. White;M.J. Hounslow

  • Studies of fluid bed granulation in an industrial R&D context

    R. Boerefijn;M.J. Hounslow

Frequent Co-Authors

Agba D. Salman
Agba D. Salman University of Sheffield
Michael Adams
Michael Adams University of Birmingham
Gavin P. Reynolds
Gavin P. Reynolds Sheffield Hallam University
James D. Litster
James D. Litster University of Sheffield
Gerald Warnecke
Gerald Warnecke Otto-von-Guericke University Magdeburg
Evangelos Tsotsas
Evangelos Tsotsas Otto-von-Guericke University Magdeburg
Paul Lant
Paul Lant University of Queensland
Mojtaba Ghadiri
Mojtaba Ghadiri University of Leeds
Jane Clarke
Jane Clarke University of Cambridge
Yulong Ding
Yulong Ding University of Birmingham

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