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Portland High Efficiency Small Ductwork Systems by The Clean Air Act Inc.

The Clean Air Act Inc.

With each passing year, as the cost of energy increases, a greater emphasis is placed on the efficiency of home heating and cooling systems. Ratings such as SEER (Seasonal Energy Efficiency Rating) for air conditioners and HSPF (Heating Seasonal Performance Factor) for heat pumps are used to measure and compare how effectively they use the energy they consume to control the temperature your home. These ratings are important, but so too is your ductwork and its ability to deliver air to your rooms as efficiently as possible.

That’s why high efficiency small ductwork systems are such a fantastic upgrade for any home heating and cooling system. While a complete high velocity heating and cooling system is ideal in that it uses less energy to produce heated or cooled air for your home, a ductwork upgrade can be a fantastic way to save money as well.

If you want to learn more about how high efficiency small ductwork systems can reduce your energy consumption and improve the distribution of conditioned air inside your home, contact  The Clean Air Act Inc. today. Our HVAC technicians work closely with homeowners to provide trusted, reliable heating and cooling that also reduces monthly energy bills.

The Clean Air Act Inc. installs and services high efficiency small ductwork systems throughout the greater Portland metropolitan area. Contact us to learn more.

Call 503-632-1563 for High Efficiency Small Ductwork Systems
in Portland, OR or click here to contact us

Benefits of High Efficiency Small Ductwork in Portland, OR

The most efficient way to deliver conditioned air in a forced air system is through ductwork. However, some homes cannot accommodate full sized ductwork in cramped walls. That’s why smaller ductwork is such a terrific option. High efficiency small ductwork systems use only one third the amount of space of a traditional ductwork, making it far more likely that you can integrate the system into your home.

Beyond saving space, small ductwork is more efficient than traditional ductwork. In box ducts, the duct walls can leak heated or cooled air, reducing the amount of temperature controlled air your system gets from the air handler to each room in your home. This results in uneven comfort control and a higher energy bill throughout the year.

With high efficiency small ductwork, there is 65% less surface area over which the heated or cooled air must pass. Engineering has been targeted toward providing an air tight seal, and combined with high velocity delivery, the system loses far less heated or cooled air than traditional box duct systems. Most small ductwork systems are created in a factory and use custom gasket connectors so they are guaranteed to fit together properly. Traditional ductwork is often custom fabricated to fit different sizes and shapes of homes – the result is poor connections and greater air leakage, reducing efficiency for the entire system.

We Install High Efficiency Small Ductwork Systems in Portland

If you decide you’re tired of losing heated or cooled air through your ductwork or you would like to upgrade to a forced air system but you don’t have the room for full sized ducts in your walls, call  The Clean Air Act Inc. today. Our mini duct experts can walk you through the selection process for a new small ductwork system, matching it to your current heating and cooling needs, while ensuring you save as much money as possible by reducing energy loss.

Our Portland metropolitan area customers all agree – high efficiency small ductwork systems are a fantastic solution to a longstanding problem for many existing homeowners. If you’d like to learn more about integrating one of these incredible systems into your home, call us today.

Here's What Our Clients Say

An annual tune up of my furnace was performed. House call costs $60, each half-hour of service is $28. My furnace was very, very dirty so two hours were spent on it. I am confident that my furnace is in great shape now.

- Portland Customer

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