Known: The data provided at the principal states of a thermal power plant. Assume an Ideal Rankine Cycle. (a) Explain about the general theory about the thermal power plant? (b) Formulate to determine the work done by the pump, and also formulate the work done by the turbine? (c) Evaluate the amount of heat supplied to the steam, and also determine the thermal efficiency of the cycle? Conditions: The steam enters into the turbine at a Pressure of 24 bar & 400°C and the exhaust steam is enter into the condenser at a pressure of 0.1 bar. Scheme and given data: Boiler 24 bar & 400°C Turbine 0.1 bar Condenser

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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Known: The data provided at the principal states of a thermal power plant. Assume an Ideal Rankine Cycle.
(a) Explain about the general theory about the thermal power plant?
(b) Formulate to determine the work done by the pump, and also formulate the work done by the turbine?
(c) Evaluate the amount of heat supplied to the steam, and also determine the thermal efficiency of the cycle?
Conditions: The steam enters into the turbine at a Pressure of 24 bar & 400°C and the exhaust steam is enter
into the condenser at a pressure of 0.1 bar.
Scheme and given data:
Boiler
24 bar
& 400°C
Turbine
0.1 bar
Condenser
Transcribed Image Text:Known: The data provided at the principal states of a thermal power plant. Assume an Ideal Rankine Cycle. (a) Explain about the general theory about the thermal power plant? (b) Formulate to determine the work done by the pump, and also formulate the work done by the turbine? (c) Evaluate the amount of heat supplied to the steam, and also determine the thermal efficiency of the cycle? Conditions: The steam enters into the turbine at a Pressure of 24 bar & 400°C and the exhaust steam is enter into the condenser at a pressure of 0.1 bar. Scheme and given data: Boiler 24 bar & 400°C Turbine 0.1 bar Condenser
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