Week 1: Introduction and basic concepts: energy, energy transfer and energy analysis.
Week 2: Properties of Pure Substances, physics of phase change processes, property diagrams (P-v, T-v, and P-T), introduction to property table and its usage, ideal gas and its equation of state, application of the ideal gas equation of state, introduction to the compressibility factor.
Week 3: Energy analysis of closed system, moving boundary work, energy balance of closed systems, internal energy, enthalpy and specific heats.
Week 4: Mass and energy analysis of open systems.
Week 5: The second law of thermodynamics: heat engines, refrigerators and heat pumps, reversible and irreversible process, Carnot principles and Carnot cycle.
Week 6: Entropy: Increase in the entropy principle, isentropic process.
Week 7: Entropy: reversible steady flow work, isentropic efficiencies of steady-flow, entropy balance.
Week 8: Exergy analysis, work potential of energy, second law efficiencies, exergy change of a system, exergy balance.
Week 9: Gas power cycle.
Week 10: Vapor power cycle, combined power cycle, and refrigeration cycle.
Week 11: Thermodynamic property relations.
Week 12: Gas mixture (ideal vs. real), gas-vapor mixture, first law application to chemically reacting systems, chemical equilibrium and phase transition.
DOWNLOAD APP
FOLLOW US