Inhaltsverzeichnis
- In a typical AHU the airstreams meet in a defined order: outdoor air and return air mix, the mixture passes through the recovery core, and only then through the heating or cooling coil. Placing recovery after the mixing box but before the coil means the core pre-conditions the mixed air, shrinking the coil duty rather than fighting it. The core type decides the footprint: a rotary wheel is compact and round, fitting a vertical section, while a plate exchanger is a rectangular block that needs more casing depth but separates the streams. For very large AHUs, multiple cores in parallel or a wheel plus a plate in series can hit both high effectiveness and manageable pressure drop. The casing must seal the two airstreams or the recovered energy leaks straight back out.
- Most AHUs have an airside or water-side economizer that brings in extra outdoor air for free cooling when the outside is cooler than the return. Recovery and economizer can fight each other if not sequenced: on a cool day the economizer wants maximum outdoor air while the wheel is busy recovering energy from the return, so the control must decide which mode wins. The standard answer is a bypass, when the economizer is active and free cooling is available, the recovery core is bypassed or the wheel stopped so the unit free-cools instead of recovering. The control sequence should be explicit: economizer mode first, recovery mode when outdoor air needs conditioning. Get this wrong and you either waste fan energy pushing air through an idle core or miss free cooling entirely. A recovery overview helps frame where each strategy applies.
- Recovery is the most-measured and least-verified feature in many AHUs. The only way to know you got the savings is to measure effectiveness in the field: instrument the supply and exhaust inlets and outlets, record the temperatures and flows, and compute actual sensible and, for an enthalpy wheel, latent effectiveness against the design value. Too many installs assume the nameplate holds; in practice a partially closed bypass damper, a fouled wheel, or an unbalanced fan can quietly halve the recovered energy. Equally important is the fan-power penalty, the core adds pressure drop, so the recovered heating and cooling must be net of the extra fan kWh. Commissioning should confirm the whole balance, not just that the wheel spins. Our selection guide lists the measurements to request.
- The recurring errors are predictable. Undersizing the core to save cost forces a high face velocity, which spikes pressure drop and can drop effectiveness below code thresholds. Wrong face velocity also makes the core noisy. No access for cleaning dooms a wheel or plate in a dirty airstream, the core fouls and effectiveness collapses within a season. Forgetting the bypass means the unit can never free-cool. And specifying a wheel where the airstream is contamination-sensitive violates the separation rule. A short commissioning checklist and a maintenance plan, filter changes, periodic core wash, damper exercise, keep the recovered energy real for the life of the unit. For data-center and other high-load AHUs, these details matter even more because the airflows are enormous.
- QIYU supplies rotary wheels, plate cores and heat-pipe modules sized to drop into new or existing AHUs, with bypass and economizer-ready controls. Send us your AHU schedule, airflows and coil duties and contact us for a sized quote. Reach Yang Manager on WhatsApp +86 15753355505, US tel +1 915 295-3666, or email kuns913@gmail.com. We help you select the right model or engineer a custom recovery package.
An air handling unit is where air-to-air heat recovery earns its keep in commercial buildings: the AHU already moves the supply and return air, so dropping a recovery core into the airstream is the lowest-cost way to reclaim energy at scale. But integration is not simply placing a wheel into the casing, where the core sits, how it coordinates with the economizer, and how it is commissioned decide whether you actually get the rated savings. This article covers core placement, economizer coordination, commissioning, and the common mistakes that quietly waste the investment.
In a typical AHU the airstreams meet in a defined order: outdoor air and return air mix, the mixture passes through the recovery core, and only then through the heating or cooling coil. Placing recovery after the mixing box but before the coil means the core pre-conditions the mixed air, shrinking the coil duty rather than fighting it. The core type decides the footprint: a rotary wheel is compact and round, fitting a vertical section, while a plate exchanger is a rectangular block that needs more casing depth but separates the streams. For very large AHUs, multiple cores in parallel or a wheel plus a plate in series can hit both high effectiveness and manageable pressure drop. The casing must seal the two airstreams or the recovered energy leaks straight back out.
Most AHUs have an airside or water-side economizer that brings in extra outdoor air for free cooling when the outside is cooler than the return. Recovery and economizer can fight each other if not sequenced: on a cool day the economizer wants maximum outdoor air while the wheel is busy recovering energy from the return, so the control must decide which mode wins. The standard answer is a bypass, when the economizer is active and free cooling is available, the recovery core is bypassed or the wheel stopped so the unit free-cools instead of recovering. The control sequence should be explicit: economizer mode first, recovery mode when outdoor air needs conditioning. Get this wrong and you either waste fan energy pushing air through an idle core or miss free cooling entirely. A recovery overview helps frame where each strategy applies.
Recovery is the most-measured and least-verified feature in many AHUs. The only way to know you got the savings is to measure effectiveness in the field: instrument the supply and exhaust inlets and outlets, record the temperatures and flows, and compute actual sensible and, for an enthalpy wheel, latent effectiveness against the design value. Too many installs assume the nameplate holds; in practice a partially closed bypass damper, a fouled wheel, or an unbalanced fan can quietly halve the recovered energy. Equally important is the fan-power penalty, the core adds pressure drop, so the recovered heating and cooling must be net of the extra fan kWh. Commissioning should confirm the whole balance, not just that the wheel spins. Our selection guide lists the measurements to request.
The recurring errors are predictable. Undersizing the core to save cost forces a high face velocity, which spikes pressure drop and can drop effectiveness below code thresholds. Wrong face velocity also makes the core noisy. No access for cleaning dooms a wheel or plate in a dirty airstream, the core fouls and effectiveness collapses within a season. Forgetting the bypass means the unit can never free-cool. And specifying a wheel where the airstream is contamination-sensitive violates the separation rule. A short commissioning checklist and a maintenance plan, filter changes, periodic core wash, damper exercise, keep the recovered energy real for the life of the unit. For data-center and other high-load AHUs, these details matter even more because the airflows are enormous.
QIYU supplies rotary wheels, plate cores and heat-pipe modules sized to drop into new or existing AHUs, with bypass and economizer-ready controls. Send us your AHU schedule, airflows and coil duties and Kontaktieren Sie uns for a sized quote. Reach Yang Manager on WhatsApp +86 15753355505, US tel +1 915 295-3666, or email kuns913@gmail.com. We help you select the right model or engineer a custom recovery package.