Table of Contents
- A ventilation system must include energy recovery between exhaust and outdoor air when both of these are true: The individual fan system design supply airflow is 5,000 CFM (2.4 m³/s) or greater. The minimum outdoor airflow is 70% or more of the design supply airflow. This captures dedicated outdoor-air systems (DOAS) and densely occupied mixed-air systems. Smaller systems may still make economic sense; see the AHU selection calculation for sizing the coil and wheel together.
- Metric ASHRAE 90.1-2022 requirement Minimum energy recovery ratio 50% (enthalpy recovery ratio, per AHRI 1060) Test method AHRI 1060 / AHRI 1061 Economizer bypass Allows bypass, but flow through device ≤ 10% of design and pressure drop ≤ 0.4 in. w.c. For systems that do not provide active humidification, the sensible recovery ratio must reach 50% at the heating design condition, while the enthalpy ratio applies at the cooling design condition. The enthalpy vs membrane comparison helps pick the right device to clear the threshold.
- Laboratory fume-hood exhaust and hazardous-exhaust systems. Commercial kitchen grease-laden exhaust. Dehumidification applications in humid climates where a wheel would re-introduce moisture. Systems where energy recovery would interfere with an air-side or water-side economizer (subject to the bypass limits above). When a wheel or plate core is specified, plan for the failure modes in energy recovery wheel troubleshooting — frost, seal leakage, and imbalance all erode the measured effectiveness that the code assumes.
- Because 90.1 sets a floor, most designers specify 60–75% effectiveness to also clear LEED energy-performance credits and shrink cooling and heating plant. The recovery device should be selected before the coil so the DX or heating capacity is sized on the recovered load, not the raw outdoor-air load.
ASHRAE Standard 90.1 is the reference energy standard for commercial buildings in the United States, and its exhaust-air energy recovery rule is the single most common code trigger for specifying a heat recovery ventilator. This article summarizes the ASHRAE 90.1-2022 requirements that apply to designers specifying air-to-air recovery.
A ventilation system must include energy recovery between exhaust and outdoor air when both of these are true:
- The individual fan system design supply airflow is 5,000 CFM (2.4 m³/s) or greater.
- The minimum outdoor airflow is 70% or more of the design supply airflow.
This captures dedicated outdoor-air systems (DOAS) and densely occupied mixed-air systems. Smaller systems may still make economic sense; see the AHU selection calculation for sizing the coil and wheel together.
| Metric | ASHRAE 90.1-2022 requirement |
|---|---|
| Minimum energy recovery ratio | 50% (enthalpy recovery ratio, per AHRI 1060) |
| Test method | AHRI 1060 / AHRI 1061 |
| Economizer bypass | Allows bypass, but flow through device ≤ 10% of design and pressure drop ≤ 0.4 in. w.c. |
For systems that do not provide active humidification, the sensible recovery ratio must reach 50% at the heating design condition, while the enthalpy ratio applies at the cooling design condition. The enthalpy vs membrane comparison helps pick the right device to clear the threshold.
- Laboratory fume-hood exhaust and hazardous-exhaust systems.
- Commercial kitchen grease-laden exhaust.
- Dehumidification applications in humid climates where a wheel would re-introduce moisture.
- Systems where energy recovery would interfere with an air-side or water-side economizer (subject to the bypass limits above).
When a wheel or plate core is specified, plan for the failure modes in energy recovery wheel troubleshooting — frost, seal leakage, and imbalance all erode the measured effectiveness that the code assumes.
Because 90.1 sets a floor, most designers specify 60–75% effectiveness to also clear LEED energy-performance credits and shrink cooling and heating plant. The recovery device should be selected before the coil so the DX or heating capacity is sized on the recovered load, not the raw outdoor-air load.