This HVAC Design Engineering Course offers a thorough exploration of HVAC (Heating, Ventilation, and Air Conditioning) systems design principles, regulations, and practical applications. Participants will delve into key concepts, codes, and industry standards, mastering the latest techniques for efficient and effective HVAC system design. Through hands-on exercises and real-world case studies, attendees will learn to create sustainable and compliant HVAC solutions tailored to diverse environments
• Why HVAC?
• History of HVAC
• Life without HVAC
• Career in HVAC and Growth
• Important concepts/Equations
• BTU, TR, Unit Conversion
• Heat Transfer
• Conduction, Convection, Radiation
• Dry bulb temperature
• Wet Bulb Temperature
• Dew Point Temperature
• Absolute Humidity and Relative humidity
• Enthalpy, Sensible & Latent Heat
• Significance of Above Parameters in System Design
• Compression
• Condensation
• Expansion
• Evaporation
• Window AC
• Split AC
• VRF System
• Package unit AC
• Air Handling Unit (AHU)
• Fan Coiled Unit
• Chilled Water System
• Duct classification
• Duct Insulation
• Duct Designing
o Manual Method
o Velocity Constant Method
o Static Regain Method
o McQuay Duct Size
• Design of chilled water pipes
o Constant Velocity Method
o Velocity + Friction Method
• Chilled water pipe Insulation
• Chilled water pump Selection
• Open head pumping system
• Closed head pumping system
• Fan laws
• Pressure laws
• Types of fans & selection
• Forward backward curve pump
• Toiler exhaust
• Kitchen exhasut
• Basement exhaust
• Diffuser and its type
• Grill
• Sizing
• Manual Load Calculation
• HAP Software
• Retail Project
• Office fit-out project
• Residential project
• Commercial Project
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