Categories for Evaporative Cooler Pads

Which Evaporative Cooler Pad Materials Perform Best?

Which Evaporative Cooler Pad Materials Perform Best?

September 19, 2025 8:18 pm Published by

Selecting the right evaporative cooler pad materials is one of the most consequential choices you can make for system performance, service life, and total cost of ownership. Pads determine how effectively heat and mass transfer occur inside the cooler, how much fan horsepower you need to overcome pressure drop, how often you’ll be cleaning minerals and biofilm from the media, and how predictably the unit holds setpoint as outdoor conditions swing. Types of Evaporative Cooler Pad Materials Explained At a high level, pad media must (1) expose a large wetted surface area to the airstream, (2) distribute water uniformly with... View Article

How Often Should You Replace Swamp Cooler Pads?

October 18, 2024 7:37 pm Published by

Evaporative cooling is a popular and energy-efficient method of cooling homes and commercial spaces, particularly in dry, arid regions like Phoenix, AZ. One critical component of maintaining a well-functioning evaporative cooler, also known as a swamp cooler, is ensuring the cooling pads are in optimal condition. The lifespan and performance of the swamp cooler pads can significantly affect the efficiency of your cooling system. But how often should you replace swamp cooler pads, and what factors influence their longevity? The Role of Swamp Cooler Pads Swamp cooler pads are critical to the evaporative cooling process. They soak up water from... View Article

evaporative cooler pads

How Often Should Evaporative Cooler Pads Be Changed?

February 20, 2024 9:57 pm Published by Leave your thoughts

Evaporative coolers, also known as swamp coolers, offer an energy-efficient and eco-friendly alternative to traditional air conditioning systems. These coolers utilize evaporative cooling pads to cool the air by evaporating water. However, to maintain optimum performance and efficiency, it is essential to regularly maintain and replace these evaporative cooler pads. In this blog, we will delve into the technical aspects of evaporative cooler pads, understand why they need to be changed, and discuss the recommended frequency for replacement. Understanding Evaporative Cooler Pads Evaporative cooler pads play a crucial role in the cooling process. These pads are typically made of cellulose... View Article

Evaporative cooling pad for evaporative fan

What Is the Purpose of a Pad in Evaporative Cooling?

November 16, 2023 5:58 pm Published by Leave your thoughts

When it comes to maintaining a comfortable indoor environment, especially in hot and arid climates, evaporative cooling has proven to be an effective and energy-efficient alternative to traditional air conditioning systems. Evaporative cooling consumes significantly less energy and provides a more refreshing and natural cooling experience. At the heart of this cooling process lies an integral component known as the evaporative cooling pad. In this blog, we will delve into the functionality and importance of a pad in evaporative cooling systems, exploring how it enhances the efficiency and overall performance of such systems. Understanding Evaporative Cooling Before delving into the... View Article

Evaporative cooler pads in a photo

How Long Do the Pads Last in an Evaporative Cooler?

November 16, 2023 5:28 pm Published by Leave your thoughts

Evaporative coolers, also known as swamp coolers, are widely used to provide efficient and eco-friendly cooling solutions in arid and dry regions. These devices work by utilizing the principles of evaporation to reduce temperatures within an enclosed space. A crucial component of an evaporative cooler is the pad, or evaporative cooler pads, which plays a vital role in the cooling process. In this blog post, we will explore how long the pads last in an evaporative cooler, exploring various factors that impact their lifespan and how to maximize their efficiency. What are Evaporative Cooler Pads? Evaporative cooler pads, often made... View Article