Question

R-134a enters an adiabatic throttle as a compressed liquid at 18°C. If the refrigerant leaves the throttle at 70 kPa, determi

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

Satanated mixture. TokPa Compressed ligus 18°C. For throttling process, hi=ha. hori hf @ 18°C. hi = 76.52 kJ/kg. h2 =. hfz +8

Add a comment
Know the answer?
Add Answer to:
R-134a enters an adiabatic throttle as a compressed liquid at 18°C. If the refrigerant leaves the...
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
  • Problem #3 Refrigerant R-134a enters the condenser of a heat pump at 1000 kPa and 80°C...

    Problem #3 Refrigerant R-134a enters the condenser of a heat pump at 1000 kPa and 80°C at a rate of 0.025 kg/s and leaves at 1000 kPa as saturated liquid. If the compressor consumes 2 kW of power, determine: a) The COP of the heat pump (as heating device). b) The rate of heat absorption from the outside air. тан Condenser Throttling valve Compressor Evaporator To

  • Refrigerant 134a enters a turbine with a mass flow rate of 12 kg/s at 54°C, 3...

    Refrigerant 134a enters a turbine with a mass flow rate of 12 kg/s at 54°C, 3 MPa, while the velocity is negligible. The refrigerant expands in the turbine to a saturated vapor at 400 kPa where 10 percent of the steam is removed for some other use. The remainder of the refrigerant continues to expand to the turbine exit where the pressure is 5 kPa and quality is 75 percent. If the turbine is adiabatic, determine the rate of work...

  • 5-30 Air enters an adiabatic nozzle steadily at 300 kPa, 200°C, and 30 m/s and leaves...

    5-30 Air enters an adiabatic nozzle steadily at 300 kPa, 200°C, and 30 m/s and leaves at 100 kPa and 180 m/s. The inlet area of the nozzle is 80 cm². Determine (a) the mass flow rate through the nozzle, (b) the exit temperature of the air, and (c) the exit area of the nozzle. Answers: (a) 0.5304 kg/s, (b) 184.6°C, (c) 38.7 cm P = 300 kPa T, = 200°C Vi = 30 m/s A = 80 cm AIR...

  • 6. Refrigerant-134a enters an adiabatic compressor as saturated vapor at 100 kPa at a rate of...

    6. Refrigerant-134a enters an adiabatic compressor as saturated vapor at 100 kPa at a rate of 0.7 m3/min and exits at 1 MPa pressure. If the isentropic efficiency of the compressor is 87%, determine (a) the temperature of the refrigerant at the exit of the compressor, (b) the power input (in kW), and (c) the rate of entropy generation during this process.

  • A Refrigeration System Using R-134A In a refrigeration system, the refrigerant R-134A begins as s...

    A Refrigeration System Using R-134A In a refrigeration system, the refrigerant R-134A begins as saturated vapor at -15°(State 1). It then goes through a reversible adiabatic compressor to reach State 2. After flowing through the condenser (a heat exchanger), the refrigerant exits as saturated liquid at 70°C (State 3). It is then throttled by going through an expansion valve, to reach State 4. It finishes the cycle by going through another heat exchanger (the evaporator), to return to State 1....

  • Refrigerant 134a enters the expansion valve of an air conditioning unit at 140 Lbf/in2, 80 0F...

    Refrigerant 134a enters the expansion valve of an air conditioning unit at 140 Lbf/in2, 80 0F and exits at 50 Lbf/in2. If the refrigerant undergoes a throttling process, what are the temperature and the quality at the exit of the valve? Also determine the rate of entropy production from the inlet to the exit?

  • Problem I: Not applicable for 2017 Problem II: In an R-134a vapor-compression home heat pump, R-134A...

    Problem I: Not applicable for 2017 Problem II: In an R-134a vapor-compression home heat pump, R-134A enters the compressor (75% isentropic efficiency) as a saturated vapor at 200 kPa and leaves at 800 kPa. The refrigerant goes through a constant pressure condenser and leaves as a saturated liquid. The refrigerant then goes through an adiabatic expansion valve enters the evaporator as a liquid-vapor mixture. The mass flow rate of refrigerant is 0.1 kg/s. and Cod A. Write the equation for...

  • Figure provides steady-state data for a throttling valve in series with a heat exchanger. Saturated liquid...

    Figure provides steady-state data for a throttling valve in series with a heat exchanger. Saturated liquid Refrigerant 134a enters the valve at T1 = 36 degrees Celsius with a mass flow rate of 0.26 kg/s and is throttled to T2 = -8 degrees Celsius. The refrigerant then enters the heat exchanger, exiting as saturated vapor with no significant decrease in pressure. In a separate stream, liquid water enters the heat exchanger at T4 = 20 degrees Celsius and exits as...

  • Refrigerant-134a enters a diffuser as saturated vapor at 800kpa with a velocity of 120m/s, and leaves...

    Refrigerant-134a enters a diffuser as saturated vapor at 800kpa with a velocity of 120m/s, and leaves the device at 900kpa and 40^C. The R-134a is gaining energy by heat transfer at a rate of 2kW as it passes through the diffuser. If the exit area is 80% greater than the inlet area, determine the exit velocity m/s, and the mass flow rate kg/s.

  • 0.1 kg/s of R-134 enters a throttle valve as a saturated liquid at 60◦C, and exits...

    0.1 kg/s of R-134 enters a throttle valve as a saturated liquid at 60◦C, and exits at 90 kPa. Calculate the rate of entropy generation.

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