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Table of Contents
Chapter I: Fluid Dynamics
Fluid Structure Interaction
Boundary Layer and Free Surface Flows
Pumps, Blowers and Fans
Flow Control and Diagnostics
Chapter II: Multiphase Flow
Microfluidic and Nanofluidic Applications
Phase change
Chapter III: Shock waves
High-Speed Flows
Flow-Induced Vibration
Chapter IV: Refrigeration and Air-conditioning
Cryogenics
Electronic Cooling
Radiator and engine cooling
Chapter V: Power Plants and Power Generation
Fuel Technology
Energy, Exergy and Second Law,
Gasification and liquefaction
Chapter VI: Combustion & Automotive Engineering
Lubrication
Propulsion and Emissions
Chapter VII: Optimization of thermofluid systems
Inverse heat convection
Interaction of radiation and convection
Conjugate heat transfer in spacecraft and energy applications.
Fluid Structure Interaction
Boundary Layer and Free Surface Flows
Pumps, Blowers and Fans
Flow Control and Diagnostics
Chapter II: Multiphase Flow
Microfluidic and Nanofluidic Applications
Phase change
Chapter III: Shock waves
High-Speed Flows
Flow-Induced Vibration
Chapter IV: Refrigeration and Air-conditioning
Cryogenics
Electronic Cooling
Radiator and engine cooling
Chapter V: Power Plants and Power Generation
Fuel Technology
Energy, Exergy and Second Law,
Gasification and liquefaction
Chapter VI: Combustion & Automotive Engineering
Lubrication
Propulsion and Emissions
Chapter VII: Optimization of thermofluid systems
Inverse heat convection
Interaction of radiation and convection
Conjugate heat transfer in spacecraft and energy applications.