Themes

The conference covers the development and application of computational methods across all areas of fluid flow, heat and mass transfer, including, but not limited to, the following:

  • Aeronautical and Space Applications

  • Agricultural, Irrigation and Food-Process Heat and Mass Transfer

  • Artificial Intelligence, Machine Learning and Digital Twins in Thermal Engineering

  • Battery, Fuel-Cell and Electrochemical Thermal Management

  • Biomedical Engineering, Bio-Inspired Flow and Heat Transfer

  • Buoyancy-Driven Flows and Double-Diffusive Convection

  • Combustion and Reactive Flows

  • Compressible Flows

  • Computational Fluid Dynamics

  • Electronics, Data-Center and High-Heat-Flux Cooling

  • Environmental Flows

  • Geothermal Energy Modelling

  • Granular Flows

  • Heat Exchangers, Heat Pipes and Heat-Transfer Enhancement

  • Heating, Ventilating and Air Conditioning

  • Hydrogen, Ammonia and Sustainable-Fuel Thermal Systems

  • Lattice Boltzmann Methods

  • Manufacturing and Materials Processing

  • Marine and Ocean Engineering

  • Micro- and Nano-Scale Heat and Mass Transfer

  • Molecular Dynamics

  • Multiphase Flows

  • Multiphysics Applications

  • Non-Newtonian Flows

  • Nuclear Applications

  • Particle-Laden Flows

  • Phase Change and Phase-Change Materials

  • Porous Media

  • Reduced-Order Models, Surrogate Modelling and Optimization

  • Renewable and Sustainable Energy Systems

  • Thermal and Electrochemical Energy Storage

  • Turbulent Flows

  • Verification, Validation and Uncertainty Quantification (V&V/UQ)

  • Waste Management and Disposal

  • Other Related Heat and Mass Transfer Topics

Note: Although the conference primarily focuses on computational research, experimental studies are also welcome. Experimental validation of computational predictions is strongly encouraged where applicable.