Question

2. An air conditioning system is to take in air at latm 33C, 70% relative humidity and flow rate of 50m3/min and deliver it 2

0 0
Add a comment Improve this question Transcribed image text
Answer #1

Sat 336 4.76 kPa Pria di alus, = 0.7x4176 = 3.332 kila W = 0.622 Pue 0.02.115 Hyling Per pri h = CT, tw, xbg (T) = (1.005x33

Add a comment
Know the answer?
Add Answer to:
2. An air conditioning system is to take in air at latm 33C, 70% relative humidity...
Your Answer:

Post as a guest

Your Name:

What's your source?

Earn Coins

Coins can be redeemed for fabulous gifts.

Not the answer you're looking for? Ask your own homework help question. Our experts will answer your question WITHIN MINUTES for Free.
Similar Homework Help Questions
  • Atmospheric air at 32°C and 70% relative humidity passes through a cooling section in an air-conditioning...

    Atmospheric air at 32°C and 70% relative humidity passes through a cooling section in an air-conditioning duct where the air is cooled below its dew point and some of the water is removed. The air then passes over a heating section where heat is added until the final temperature is 22°C and the relative humidity is 45%. Assume the process occurs at constant pressure of 1 atm. Using the psychrometric chart, determine: (a) The amount of water removed in the...

  • 1. Air at latm, 15C and 70% relative humidity and volumetric flow rate of 10m /min...

    1. Air at latm, 15C and 70% relative humidity and volumetric flow rate of 10m /min is first heated to 19C in a heating section and then humidified by introducing water vapor. The air leaves the humidifying section at 24C and 65% relative humidity. Determine: a) The mass flow rate of steam added to the air. b) The heat flow rate transferred to the air in the heating section Heating coils 100.000 1 atm T1 = 15°C T3 = 24°C...

  • An air conditioning system is to take air in at 34°C and 70% relative humidity and deliver it at ...

    An air conditioning system is to take air in at 34°C and 70% relative humidity and deliver it at 22°C and 50% relative humidity. Determine the amount of cooling required the amount of heating required a. b. An air conditioning system is to take air in at 34°C and 70% relative humidity and deliver it at 22°C and 50% relative humidity. Determine the amount of cooling required the amount of heating required a. b.

  • 4. Air-Conditioning Unit [20 Marks] 1 m3/s of moist air at 32 °C with a relative...

    4. Air-Conditioning Unit [20 Marks] 1 m3/s of moist air at 32 °C with a relative humidity of 70% is to be treated by a simple air condition system to produce air at 18 °C with a relative humidity of 50% The system will have two stages. In the first stage, the air will pass over cooling coils to dehumidify it, and in the second stage it will be heated electrically to the specified outlet conditions You may ignore the...

  • 150 ft3/min of air at 80F dry-bulb temperature and 70% relative humidity enters an air conditioning...

    150 ft3/min of air at 80F dry-bulb temperature and 70% relative humidity enters an air conditioning unit and leaves it as saturated air at 50F. Part of the moisture in the air that condensate is collected and removed at 55F. Draw the cycle on the attached chart and a)Determine the rates of heat removal from the air. b)Determine the rate of moisture removal from the air

  • An air conditioning system operates at a total pressure of 95 kPa and consists of a...

    An air conditioning system operates at a total pressure of 95 kPa and consists of a heating section and a humidifier that supplies wet steam (saturated water vapor) at 100°C. Air enters the heating section at 10°C and 70 percent relative humidity at a rate of 35 m/min, and it leaves the humidifying section at 20°C and 60 percent relative humidity. Determine (a) the temperature and relative humidity of air when it leaves the heating section, (b) the rate of...

  • On a summer day the pressure is 1 atm, the temperature is 32°C, and the relative humidity is 95 percent. This air is to be conditioned to 24°C and 60 percent relative humidity. a) Determine the amount...

    On a summer day the pressure is 1 atm, the temperature is 32°C, and the relative humidity is 95 percent. This air is to be conditioned to 24°C and 60 percent relative humidity. a) Determine the amount of cooling, in kJ, required and b) Water removed, in kg, per 1000 m3 of dry air processed at the entrance to the system. Cooling coils Ti 32С ф,-95% т,-24°C φ2 60% l atm Condensate Cooling coils Ti 32С ф,-95% т,-24°C φ2 60%...

  • Problem 7 O/5 points (0%) Humid air at 1 atm, 42 °C dry bulb and 55 % relative humidity is cooled...

    Problem 7 O/5 points (0%) Humid air at 1 atm, 42 °C dry bulb and 55 % relative humidity is cooled at constant pressure to a temperature 9 °C below its dew-point temperature. Sketch the psychrometric diagram for the process and determine the heat transfer from the air o kJ/kg dry air Cooling coils T2 φ2 T1 ф! 101.3 kPa i H-4」+'Condensate Condensate removal Now Problem (resets attempts) Resets Remaining: 10 Attempts Remaining: 10 Submit Problem 7 O/5 points (0%)...

  • Problem 14.7: An air-conditioning system operates at a total pressure of 95kPa and consists of a...

    Problem 14.7: An air-conditioning system operates at a total pressure of 95kPa and consists of a heating section and a humidifier that supplies wet steam (saturated water vapor) at 100°C. Air enters the heating section at 10°C and 70 percent relative humidity at a rate of 35 m'/min, and it leaves the humidifying section at 20°C and 60 percent relative humidity. Determine (a) the temperature and relative humidity of air when it leaves the heating section, (b) the rate of...

  • Name: QUESTION 1 [25 Points] Moist air enters an air conditioning system at a dry bulb...

    Name: QUESTION 1 [25 Points] Moist air enters an air conditioning system at a dry bulb temperature T., 30 'C and relative humidity фі80% and exits at a dry bulb temperature T2 179C and relative humidity ф2.50% as shown in the figure below. The condensate exits the system at 15 °C. The mass flow rate of the dry air is 2.5 kg/s. Assume the air is at atmospheric pressure P-101.3 kPa. Cooling coils T-17 C 0-50 % Pp:-6.282 kPa Ti-30...

ADVERTISEMENT
Free Homework Help App
Download From Google Play
Scan Your Homework
to Get Instant Free Answers
Need Online Homework Help?
Ask a Question
Get Answers For Free
Most questions answered within 3 hours.
ADVERTISEMENT
ADVERTISEMENT
ADVERTISEMENT