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Sheet M-113
PPDPDD PACE

HVACpitfall

VAV with terminal reheat vs standard VAV

One-line orientation

VAV with terminal reheat adds a heating coil at each VAV box to allow per-zone temperature precision — the exam tests knowing this wastes energy and when that tradeoff is justified.

Key points

  • Standard VAV recap: varies the volume of centrally cooled air sent to each zone; each zone thermostat modulates a damper. Efficient for variable cooling loads; no local heating capability at the terminal.

  • VAV with terminal reheat: adds a heating coil (electric resistance or hot-water) inside each VAV box. The central AHU still supplies cool air; the reheat coil raises the air temperature locally before it enters the zone.

  • Operation: the system supplies cool air to every zone simultaneously. Zones that need cooling receive it by increasing airflow; zones that need heating (or need less cooling) receive reheated air from the local coil.

  • Energy penalty: the system cools air centrally and then reheats it locally — both processes consume energy. This simultaneous heating-and-cooling loop is an inherent inefficiency and is the reason the system is flagged in energy codes.

  • When justified: choose VAV reheat when zones need minimum ventilation airflow and local heating. This is common in hospitals, laboratories, clean rooms, and other spaces that need tight local control.

Confusions / comparison

Standard VAVVAV with terminal reheat
Terminal unitDamper onlyDamper + heating coil
Zone temperature controlCooling only (throttle airflow)Cooling and heating per zone
Energy efficiencyHighLower — simultaneous heat/cool
First costLowerHigher (coils + controls)
Best applicationVariable-load office/commercialHospitals, labs, precision spaces

→ HVAC: single vs multi-zone (VAV reheat is a multi-zone sub-type) · dual-duct system (another energy-intensive precision-control approach) · HVAC distribution systems (all-air context for VAV family).