Question: Consider the following data: State 1 ( inlet ) : - Temperature: 2 8 degrees Celsius - Pressure: 1 bar - Relative Humidity: 0 .
Consider the following data:
State inlet:
Temperature: degrees Celsius
Pressure: bar
Relative Humidity:
State State : Cooling dQdT KW
State :
T degrees Celsius
Pressure bar
Relative Humidity
Water Temperature Wet Vapor Temperature
State State : Heating
State humidifier:
T degrees Celsius
Pressure bar
Relative Humidity
Questions:
Water Vapor Pressure Moist Air at the inlet
Specific Mass HO Moist AirCalculate in MV at the inlet
Specific Mass Dry Air in moist air at the inlet
Specific Volume Moist Air at the inlet
Volumetric Enthalpy Moist Air at the inlet
Specific Enthalpy Moist Air at the inlet
Water Vapor Pressure Moist Air at the humidifier outlet
Specific Mass HO Moist Air at the humidifier outlet
Specific Mass Dry Air in moist air at the humidifier outlet
Specific Enthalpy Moist Air at the outlet
Specific Volume Moist Air at the humidifier outlet
Volumetric Enthalpy Moist Air at the humidifier outlet
Specific Enthalpy Moist Air at the coil outlet
The coil exits refrigeration moist air has the same HO content as dry air and moist air at the outlet. Saturated moist air, see the PT relation. Calculate the exit temperature of the refrigeration coil.
Volumetric Enthalpy of the moist air exiting the coil
Specific Enthalpy of the moist air exiting the coil
Mass Flow Rate of moist air at the inlet
Mass Flow Rate of condensed HO exiting the refrigeration coil
Heat exchange rate Moist Air exiting the refrigeration coil with the heating coil
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