Solution with matching schematic diagram pls
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Solution with matching schematic diagram pls
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Solved in 3 steps with 1 images
- Steam is delivered to turbine at 5.4 MPa and 600 degree C. Before condensation at 31 degree C, steam is extracted for feed water heating at 0.6 MPa. The turbine exhaust is 60 degree C. the required values of some state point properties are tabulated below. 7. Determine the quality of steam at the condenser inlet.Steam is delivered to turbine at 5.4 MPa and 600 degree C. Before condensation at 31 degree C, steam is extracted for feed water heating at 0.6 MPa. The turbine exhaust is 60 degree C. the required values of some state point properties are tabulated below. 6. Determine the enthalpy of bled steam entering the open feed water heater.A reheater cycle is executed of 1kg steam expanding initially from 12.111 Mpa and 540.111oC. The reheater pressures are 2.5111 MPa and the steam leaves the reheater at 420.111oC. Condensation occurs at 0.02111 Mpa. Calculate W, ec and ee.
- In the condenser of the power plant, Ammonia is isobarically condensed to saturated liquid state with 615.2kPa and x = 0.9, the mass flow rate is 4 t/h. The heat rejected from the condensing ammonia is added to heat water, which is heated from 277K to 281K. What is the mass flow rate of water in t/h. Also sketch the T-s and P-v diagrams.Steam is delivered to turbine at 5.4 MPa and 600 degree C. Before condensation at 31 degree C, steam is extracted for feed water heating at 0.6 MPa. The turbine exhaust is 60 degree C. the required values of some state point properties are tabulated below. 11. Calculate the thermal efficiency of the cycleSteam is delivered to turbine at 5.4 MPa and 600 degree C. Before condensation at 31 degree C, steam is extracted for feed water heating at 0.6 MPa. The turbine exhaust is 60 degree C. the required values of some state point properties are tabulated below. 10. Calculate the net work of the cycle.
- A reheater cycle with two stages of reheating is executed with steam expanding initially from 20.356 Mpa and 540 oC. The pressures of two reheaters are 3.2356 Mpa and 0.85356 Mpa, and the steam leaves each reheater at 540oC. Condensation occurs at 70oC. Calculate W, ec and ee.Steam is generated at 4.10 Mpa and 440°C and condensation occurs at 0.105 MPa a. For a Rankine engine operating between these limits, computethe thermal efficiency and the heat rate b. Considering that a Rankine cycle occurs between same limits, determine QA, QR, Wnet and eth c. What mass flow rate is required for a net output of 30 000 kW Don't answer the given problem, just give me the schematic diagram and t-s diagram of the given problemA steam turbine produces 2.5 MW of work. Steam enters the turbine at 4 MPa and 400oC. Steam out turbine at 1.4 MPa and 300 C.a. What type of turbine is this (back pressure, condensing,extraction)! Why?b. Determine the steam flow rate (kg/hour)! (51963)c. Determine TSR and ASR (units must be stated)! (13,13 and20.79 kg/kWh)d. Determine the efficiency of the steam turbine!
- The air conditions at the intake of an air compressor are 33 C, 50 percent relativehumidity, and 101 kPa. The air is compressed to 400 kPa, then sent to anintercooler. If condensation of water vapor from the compressed air is to beprevented, what is the minimum temperature (tdp) to which the air can be cooled inthe intercooler?Use theoretical calculation for this problem.A steam turbine receives steam from a boiler at 8 MPa and 480oC. After some time, a third of thesteam is used for process heating at 6.5 Mpa after the remaining steam was reheated at 5 MPa and 460oC.A third of the steam is again extracted for process heating at 4 Mpa after the remaining steam was againreheated at 2 MPa and 450oC. The remaining steam continues to expand in the turbine and is then cooledin the condenser at 0.5 Mpa. If the total mass circulated in the system is 100 kg/s and the thermal plantbehaves as an ideal vapor cycle, (Note: All FWH used in the cycle is open.) Determine: a. The schematic diagram of the thermal plantb. The T-S diagram of the thermal plantc. The enthalpies on each stated. The total heat addede. The total heat rejectedf. The amount of cooling water needed in the condenser if the coolingwater’s temperature difference is 15 K.g. The total power generated by the turbineh. The total pump work in the cyclei. The Thermal Efficiency of the cyclej. The Carnot…Water vapor with a flow rate of 20000 kg / h enters the condenser of a power plant at a pressure of 20 kPa and a dryness degree of 95 percent. In the condenser, there is heat transfer to the river water flowing through the pipes. The temperature rise of the river water is limited to 10 C to prevent thermal pollution. Since the state of the water at the condenser outlet is saturated liquid at 20 kPa pressure, what should be the flow rate of the cooling water.