A robust computer model has been developed for the humidification of a
high-pressure, hot, dry-air stream via contact with water in a counte
rcurrent column. This algorithm was developed for use in the simulatio
n of Humid Air Turbine power cycles. The solution technique is based o
n equation of state equilibrium calculations, mass and energy balances
, and integrated mass and heat transfer expressions. Profiles of air t
emperature, air humidity and water temperature as a function of column
height are provided for gas cooling or gas heating conditions. The al
gorithm also determines if the mass and heat transfer are rate-limited
(unsaturated air) or equilibrium-limited (saturated air). The algorit
hm requires the specification of the input air and water streams to th
e column. A measure of the column's capacity to provide mass and heat
transfer must also be provided in the form of either (a) an Approach T
o Wet Bulb (ATWB), which is used to determine the temperature of the w
ater exiting the column, or (b) the column characteristic. If the user
provides an unrealistic ATWB or does not specify an ATWB or column ch
aracteristic, the algorithm determines the lowest ATWB that can be rea
lized in the column. The solution algorithm provides the effluent air
humidity, effluent air temperature, and (a) the column characteristic
required to attain the specified ATWB, or (b) the ATWB which correspon
ds to the specified column characteristic.