operating data for a cogeneration cycle that generates electricity and provides heat for campus buildings. Steam at 1.5 MPa, enters a two-stage turbine (isentropic) with a mass flow rate of 1 kg/s. A fraction of the total flow, 0.15, is extracted between the two stages at 0.2 MPa to provide for building heating, and the remainder expands through the second stage to the condenser pressure of 0.1 bar. Condensate returns from the campus buildings at 0.2 MPa, and passes through a trap into the condenser, where it is reunited with the main feedwater flow. Saturated liquid leaves the condenser at 0.1 bar. Determine Draw the T-S diagram for the cycle and determine (20 points) a) the rate of heat transfer to the working fluid passing through the boiler, in kW. (15 points) b) the net power developed, in kW.
- 1 kg P1.5 MPa Turbine Boiler (1) 0.15) P, 0.2 MP 0.1 har (y 0.15) Trap Condenser P-0.2 MP Pamp PP0.1 har **0 (saturated liquid) State р h (kJ/kg) 1 1.5 MPa 2962.7 2622.9 2 0.2 MPa 3 0.1 bar 2260.4 4. 171.83 0.1 bar 1.5 MPa 5 173.34 6 0.2 MPa 231.13 7 0.1 bar
operating data for a cogeneration cycle that generates electricity and provides heat for campus buildings. Steam at 1.5
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operating data for a cogeneration cycle that generates electricity and provides heat for campus buildings. Steam at 1.5
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