The basis of any evaporative cooling system is the evaporation of water into an airstream.
Evaporative cooling system sketch.
When operating an evaporative cooler windows are opened part way to allow warm indoor air to escape as it is replaced by cooled air.
Note that swamp coolers can be considered stand alone evaporative cooling systems but otherwise operate similarly as pad and fan systems.
The most common way of accomplishing evaporative cooling in a greenhouse is with a fan and pad system figure 1.
Unlike central air conditioning systems that recirculate the same air evaporative coolers provide a steady stream of fresh air into the house.
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The fan draws dry hot air into the machine and across the cooler pads these thick pads absorb water from the reservoir and.
In general the machine will consist of a fan a thick pad a water reservoir and some additional controls for fine tuning the results.
An evaporative cooling system takes basic evaporation and automates it to efficiently lower the temperature of the air in your home.
An evaporative cooling system consists of an intake chamber filter s supply fan direct contact or indirect contact heat exchanger exhaust fan water sprays re circulating water pump and water sump.
An evaporative cooler also swamp cooler swamp box desert cooler and wet air cooler is a device that cools air through the evaporation of water.
Evaporative cooling systems are characterised by low energy use compared with refrigeration cooling.
The coolest area of the greenhouse is adjacent to the evaporative cooling pads.
Pad and fan systems are part of a greenhouse s mechanical ventilation system.
Typical fan and pad greenhouse arrangement.
Evaporative cooling differs from typical air conditioning systems which use vapor compression or absorption refrigeration cycles.
Evaporative cooling uses the fact that water will absorb a relatively large amount of heat in order to evaporate.