Adiabatic (Evaporative) Cooling

Adiabatic cooling (evaporative cooling) is an air-treatment process in which air is cooled by evaporating water without heat exchange with the surroundings (adiabatically).

Process thermodynamics

Adding (liquid) water to the air in an adiabatic process:

  • Temperature tt falls (sensible heat → latent heat)
  • Humidity ratio xx rises
  • Enthalpy hh stays constant (or very nearly so)

For this reason adiabatic cooling appears in the Mollier diagram as a line parallel to a constant-enthalpy line — the line h=consth = \text{const}.

Maximum cooling

Air can be cooled adiabatically at most to its wet-bulb temperature (twbt_{wb}), where it reaches φ = 100 %. At that point the air is saturated and evaporation stops.

Saturation effectiveness of an evaporative cooler:

η=t1t2t1twb\eta = \frac{t_1 - t_2}{t_1 - t_{wb}}

where t1t_1 is the inlet and t2t_2 the outlet air temperature.

Types of evaporative cooler

TypePrincipleTypical η
Spray typeWater sprayed into the air stream75–85 %
Pad (media) coolerAir passes through a wetted pad80–90 %
Air washerAir passes through a chamber of sprayed water85–95 %
Indirect evaporative coolerCooling without adding moisture to the supplydepends on configuration

Use in HVAC

  • Air conditioning in dry climates (southern Europe, the Middle East) — an efficient, energy-saving alternative to mechanical cooling
  • Data centers — free cooling with adiabatic (evaporative) pre-cooling of the air
  • Industrial halls — lowering temperature without mechanical cooling in suitable climates

Climatic suitability

In humid-continental and maritime climates, adiabatic cooling is less effective than in a dry Mediterranean climate, because summer air carries a higher relative humidity. It can still be worthwhile as pre-cooling or in combination with mechanical cooling.

Frequently Asked Questions

What is adiabatic cooling of air?

Adiabatic cooling (evaporative cooling) is a process in which air is cooled by evaporating water at constant enthalpy. The air's sensible heat is converted into latent heat of the water vapor — temperature falls, humidity rises, and enthalpy stays constant.

What is the maximum effectiveness of an evaporative cooler?

In theory the air can reach its wet-bulb temperature (t_wb), which corresponds to φ = 100 %. In practice, evaporative coolers reach 70–95 % of this limit.

When is adiabatic cooling unsuitable?

Adiabatic cooling adds moisture to the air. It is unsuitable where humidity is already high (a summer with φ > 60 %), or where the added moisture would damage a process or cause discomfort.

View Adiabatic (Evaporative) Cooling in the interactive Mollier diagram

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