Psychrometric Calculator
Adjust inputs on the left and click calculate
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ℹ About This Calculator
Psychrometrics is the study of the thermodynamic properties of moist air. These properties are fundamental to every HVAC calculation - from cooling coil sizing to humidification load to ventilation design. The psychrometric chart is the HVAC engineer's most essential tool, and our calculator provides all the key properties from just two inputs: dry-bulb temperature and relative humidity.
ASHRAE Handbook of Fundamentals Chapter 1 provides the complete psychrometric equations. At sea level (101.325 kPa), the equations above are exact to within ±0.1°C. At altitude (e.g., Bangalore at 920m: ~90.8 kPa), the atmospheric pressure must be adjusted - humidity ratio and enthalpy change significantly. The psychrometric chart for US standard conditions (summer: 35°C DB/25°C WB, winter: 15°C DB/10°C WB) is essential for HVAC system design.
📐 Psychrometric Equations (ASHRAE Fundamentals)
ASHRAE Fundamentals
Saturation Pressure (Magnus formula): Pws = 0.6108 × exp(17.27 × T / (T + 237.3)) [kPa] Humidity Ratio: W = 0.622 × Pw / (P_atm − Pw) [kg/kg dry air] Pw = φ × Pws (φ = relative humidity as decimal) Specific Enthalpy: h = 1.006 × T_db + W × (2501 + 1.86 × T_db) [kJ/kg] Dew Point (Magnus inverse): T_dp = 243.04 × ln(Pw/0.6108) / (17.625 − ln(Pw/0.6108)) Wet Bulb (Sprung): T_wb ≈ T_db − (1 − φ) × (T_db + 273.15) / 1556 Specific Volume: v = 0.287042 × (T_db + 273.15) / (P_atm − Pw)
📝 Worked Calculation Example
Specific enthalpy h = 1.006 × 30 + 0.016 × (2501 + 1.86 × 30) ≈ 71.0 kJ/kg. The dew point works out to about 21.4°C - any surface below this temperature, such as a chilled water pipe or window pane, will show condensation under these conditions.