Track-1: Advanced Materials for Thermal and Energy Systems

  • Smart materials and composites for energy efficiency
  • Phase change and nanostructured materials for heat transfer enhancement
  • High-performance coatings and thermal barrier materials

Track-2: Heat Transfer, Fluid Flow, and Thermal Management

  • Convective, radiative, and phase-change heat transfer
  • Cooling and heating technologies for electronics and batteries
  • Microchannel, spray, and jet impingement cooling

Track-3: Computational Modeling, Simulation, and AI in ThermalFluid Engineering

  • CFD and multiphysics modeling of thermal–fluid–material systems
  • AI/ML-driven design optimization and predictive modeling
  • Digital twins and virtual prototyping of thermal systems

Track-4: Renewable Energy, Waste Heat Recovery, and Sustainability

  • Solar thermal, geothermal, and bioenergy systems
  • Thermal energy storage and hybrid renewable systems
  • Life cycle analysis and sustainable energy integration

Track-5: Manufacturing, Additive Technologies, and Material Processing

  • Additive manufacturing and 3D printing of heat exchangers and energy devices
  • Advanced joining and coating techniques
  • Material processing for improved thermal performance

Track-6: Thermo-Mechanical Systems and Propulsion

  • Power plants, IC engines, turbines, and propulsion systems
  • Thermodynamic cycles and performance optimization
  • Thermal fatigue, mechanical integrity, and reliability

Track-7: Emerging Trends in Fluid and Thermal Sciences

  • Nanofluids, hybrid fluids, and non-Newtonian flow
  • Multiphase and turbulent flow dynamics
  • Experimental techniques and measurement innovations

Track-8: Industry 4.0, Smart Systems, and Policy Perspectives

  • AI and IoT in manufacturing and thermal management
  • Smart sensors, monitoring, and control systems
  • Policy frameworks for sustainable industrial systems

Track-9: Environmental Impact of Thermal Systems and Nanofluids

  • Thermal pollution effects on air, water, and ecosystems
  • Environmental safety, toxicity, and life-cycle assessment of nanofluids
  • Heat-emission impact from industries and sustainable mitigation strategies
  • Environmental modeling and assessment using CFD and data-driven tools