Question

10-31 Consider a steam power plant that operates on the 153651wbot nogo 151 ideal reheat Rankine cycle. The plant maintains t
turbine and the cycles thermal efficiency. Answers: 327°C, 481°C, 35.0 percent 3 is subco bo Pro 105. Using EES or other fog
0 0
Add a comment Improve this question Transcribed image text
Answer #1

please find the solution of above quesion

note: numberig is done from turbine inlet please check all calculation is done according to T-S diagram numbering

solution of 10-31

thank you

rate me high

Add a comment
Know the answer?
Add Answer to:
10-31 Consider a steam power plant that operates on the 153651wbot nogo 151 ideal reheat Rankine...
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
  • Consider a steam power plant that operates on the ideal regenerative Rankine cycle with a closed...

    Consider a steam power plant that operates on the ideal regenerative Rankine cycle with a closed feedwater heater as shown in the figure. The plant maintains the turbine inlet at 3000 kPa and 3508C; and operates the condenser at 20 kPa. Steam is extracted at 1000 kPa to serve the closed feedwater heater, which discharges into the condenser after being throttled to condenser pressure. Calculate the work produced by the turbine, the work consumed by the pump, and the heat...

  • 10-55 Consider a steam power plant that operates on the ideal regenerative Rankine cycle with a...

    10-55 Consider a steam power plant that operates on the ideal regenerative Rankine cycle with a closed feedwater heater as shown in the figure. The plant maintains the turbine inlet at 3000 kPa and 350°C and operates the condenser at 20 kPa. Steam is extracted at 1000 kPa to serve the closed feedwater heater, which discharges into the condenser after being throt- tled to condenser pressure. Calculate the work produced by the turbine, the work consumed by the pump, and...

  • 10-48 Consider a steam power plant that operates on the ideal regenerative Rankine cycle with a...

    10-48 Consider a steam power plant that operates on the ideal regenerative Rankine cycle with a closed feedwater heater as shown in the figure. The plant maintains the turbine inlet at 3000 kPa and 350°C; and operates the condenser at 20 kPa. Steam is extracted at 1000 kPa to serve the closed feedwater heater, which discharges into the condenser after being throttled to condenser pressure. Calculate the work pro- duced by the turbine, the work consumed by the pump, and...

  • Example: Consider a steam power plant operating on the ideal reheat Rankine cycle. Steam enters the...

    Example: Consider a steam power plant operating on the ideal reheat Rankine cycle. Steam enters the high-pressure turbine at 15 MPa and 600 °C and is condensed in the condenser at a pressure of 10 kPa. If the moisture content of the steam at the exit of the low-pressure turbine is not to exceed 10.4 percent, determine (a) the pressure at which the steam should be reheated and (b) the thermal efficiency of the cycle. Assume the steam is reheated...

  • Consider a steam power plant that operates on the ideal reheat Rankihe Coo Da maintains the...

    Consider a steam power plant that operates on the ideal reheat Rankihe Coo Da maintains the boiler at 5000kPa, the reheat section at 1200kPa, and the condenser at 20kPa. The mixture quality at the exit of both turbines is 96%. a) Draw a T-S diagram of this cycle b) Determine the temperature at the inlet of each turbine. c) Determine the cycle thermal efficiency

  • A steam power plant is based on the Rankine cycle with reheat (refer to the figure below). Steam ...

    A steam power plant is based on the Rankine cycle with reheat (refer to the figure below). Steam is produced by the boiler/superheater (H-1) at 100 bar and 600 C at a rate of 2.5 kgs. This is expanded to 10 bar in the turbine T-1 and then reheated to 600 °C in heater H-2. The steam is then expanded in turbine T-2 to a pressure of 0.1 bar. The steam is then condensed in condenser (C-1) which operates at...

  • a) A steam power plant operates on an ideal reheat-regenerative Rankine cycle. Steam enters the high-pressure...

    a) A steam power plant operates on an ideal reheat-regenerative Rankine cycle. Steam enters the high-pressure turbine (HPT) at a pressure of 10 MPa and temperature of 550°C. The steam expands through the HPT stage to a pressure of 0.6 MPa. Some of the steam at the end of the expansion process in HPT is extracted for a regeneration process in a closed-type feedwater heater. The steam leaves the heater as a saturated liquid and then is throttled to the...

  • 1. A Steam Power Plant that operates on an ideal regenerative Rankine Cycle with an open...

    1. A Steam Power Plant that operates on an ideal regenerative Rankine Cycle with an open feedwater heater is considered. The turbine inlet conditions are 6 MPa, 450 C. The regeneration pressure is 0.4 MPa. The condenser pressure is 20 kPa. a) Draw the T-s diagram, and the sketch of the steam power plant. b) Calculate the low pressure pump work. c) Calculate the high pressure pump work. d) Calculate the fraction of the steam extracted from the turbine for...

  • Consider a steam power plant that operates on an ideal regenerative rankine cycle

    Consider a steam power plant that operates on an ideal regenerative rankine cycle. Steam enters turbine at 6 MPa and 450 deg and is condensed in the condenser at 20 kPa. Bleed Steam is extracted from the turbine at 0.4 MPa to heat the boiler feed-water in an open feed-water heater, water leaves the feed water heater as a saturated liquid. Construct a property table giving the pressure, enthalpy and phase for all the state points identified in the cycle...

  • Consider a steam power plant that operates on a reheat Rankine cycle and has a net...

    Consider a steam power plant that operates on a reheat Rankine cycle and has a net power output of 80 MW. Steam enters the high-pressure turbine at 10 MPa and 500°C and the low-pressure turbine at 1 MPa and 500°C. Steam leaves the condenser as a saturated liquid at a pressure of 10 kPa. The isentropic efficiency of the turbine is 74 percent and that of the pump is 95 percent. Determine the quality (or temperature, if superheated) of the...

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