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Velocities Ventilation Ducts

Reference data and engineering information about velocities ventilation ducts for hvac systems applications.

velocitiesventilationducts

Overview

Engineering reference data for Velocities Ventilation Ducts in HVAC systems.

Key Formulas

Sensible Heat

Q=m˙cpΔTQ = \dot{m} c_p \Delta T

Heat causing temperature change.

Latent Heat

Q=m˙hfgΔωQ = \dot{m} h_{fg} \Delta\omega

Heat causing moisture change.

COP (Cooling)

COP=Qc/WCOP = Q_c / W

Coefficient of performance.

Variables

Symbol Description Unit
QQ Heat transfer W
m˙\dot{m} Mass flow rate kg/s
cpc_p Specific heat of air J/(kg·K)
ΔT\Delta T Temperature difference K

The duct velocity in air conditioning and ventilation systems should not exceed certain limits to avoid unnecessary noise generation and pressure drop. The limits depend on the application, as background noise levels vary between public and industrial buildings.

Duct Velocity Classifications

Duct systems are classified based on air velocity to guide design and noise control:

  • Low Velocity Systems: Air velocities up to 2000 fpm (10 m/s)
  • Medium Velocity Systems: Air velocities in the range 2000 to 2500 fpm (10 - 13 m/s)
  • High Velocity Systems: Air velocities greater than 2500 fpm (> 13 m/s)

References