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HVAC Theory Based on ‘Heating and Cooling of Buildings’

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  1. Introduction to HVAC Systems and Building Comfort
    • Overview of HVAC
    • Principles of indoor comfort and air quality
    • Thermodynamics and heat transfer basics
  2. Properties of Air and Moisture Mixtures (Psychrometrics)
    • Air properties and humidity
    • Psychrometric chart interpretation
    • Air conditioning processes: heating, cooling, humidifying, and dehumidifying
  3. Thermal Comfort
    • Factors influencing thermal comfort (temperature, humidity, airflow)
    • ASHRAE thermal comfort standards
    • Thermal comfort models and indices
  4. Heat Transfer in Buildings
    • Basics of conduction, convection, and radiation
    • Heat transfer through building envelopes
    • Insulation and its role in energy efficiency
  5. Heating Load Calculations
    • Heating load fundamentals
    • Space heating requirements and equipment sizing
    • Basic calculation methods for residential and small commercial buildings
  6. Cooling Load Calculations
    • Introduction to cooling loads
    • Internal and external heat gains
    • Solar gain, infiltration, and ventilation effects
  7. HVAC Systems and Equipment Overview
    • Types of HVAC systems (split systems, packaged units, central systems)
    • Overview of heating equipment (boilers, furnaces, heat pumps)
    • Basic cooling equipment and air conditioning systems
Category:
  1. Introduction to HVAC Systems and Building Comfort
    • Overview of HVAC
    • Principles of indoor comfort and air quality
    • Thermodynamics and heat transfer basics
  2. Properties of Air and Moisture Mixtures (Psychrometrics)
    • Air properties and humidity
    • Psychrometric chart interpretation
    • Air conditioning processes: heating, cooling, humidifying, and dehumidifying
  3. Thermal Comfort
    • Factors influencing thermal comfort (temperature, humidity, airflow)
    • ASHRAE thermal comfort standards
    • Thermal comfort models and indices
  4. Heat Transfer in Buildings
    • Basics of conduction, convection, and radiation
    • Heat transfer through building envelopes
    • Insulation and its role in energy efficiency
  5. Heating Load Calculations
    • Heating load fundamentals
    • Space heating requirements and equipment sizing
    • Basic calculation methods for residential and small commercial buildings
  6. Cooling Load Calculations
    • Introduction to cooling loads
    • Internal and external heat gains
    • Solar gain, infiltration, and ventilation effects
  7. HVAC Systems and Equipment Overview
    • Types of HVAC systems (split systems, packaged units, central systems)
    • Overview of heating equipment (boilers, furnaces, heat pumps)
    • Basic cooling equipment and air conditioning systems

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