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500 MMSCFD of superheated steam at pressure P1=10MPa and temperature T1=500C, are expanded adiabatically and irreversibly into a condensing steam turbine (CST) to a final
500 MMSCFD of superheated steam at pressure P1=10MPa and temperature T1=500C, are expanded adiabatically and irreversibly into a condensing steam turbine (CST) to a final pressure of P2=20kPa, as shown in the diagram below. The exhaust steam (outlet of the turbine) is condensed into saturated liquid water in the condenser using cooling water available at 35C. The temperature rise of the cooling water from the steam condensation is equal to 10C. Answer all questions posted in Assignment \#01 in the UIC Blackboard. Assume that the specific heat capacity of the cooling water is 4.18kJ/(kgC) and its density 1000kg/m3 Calculate the Temperature of Steam at the outlet of the Condenser. Express your answer in deg C and round your numerical result to a single decimal digit QUESTION 2 Calculate the Temperature of Steam at the outlet of the Steam Turbine. Express your answer in deg C and round your numerical result to a single decimal digit QUESTION 3 Calculate the Cooling Water Flow rate. Express your answer in gpm and round your numerical result to a whole number QUESTION 4 Calculate the steam quality at the outlet of the Steam Turbine. Express your answer in mole fraction and round your numerical result to two(2) decimal digits QUESTION 5 Calculate the Power generated by the Steam Turbine. Express your answer in MW and round your numerical result to a whole number 500 MMSCFD of superheated steam at pressure P1=10MPa and temperature T1=500C, are expanded adiabatically and irreversibly into a condensing steam turbine (CST) to a final pressure of P2=20kPa, as shown in the diagram below. The exhaust steam (outlet of the turbine) is condensed into saturated liquid water in the condenser using cooling water available at 35C. The temperature rise of the cooling water from the steam condensation is equal to 10C. Answer all questions posted in Assignment \#01 in the UIC Blackboard. Assume that the specific heat capacity of the cooling water is 4.18kJ/(kgC) and its density 1000kg/m3 Calculate the Temperature of Steam at the outlet of the Condenser. Express your answer in deg C and round your numerical result to a single decimal digit QUESTION 2 Calculate the Temperature of Steam at the outlet of the Steam Turbine. Express your answer in deg C and round your numerical result to a single decimal digit QUESTION 3 Calculate the Cooling Water Flow rate. Express your answer in gpm and round your numerical result to a whole number QUESTION 4 Calculate the steam quality at the outlet of the Steam Turbine. Express your answer in mole fraction and round your numerical result to two(2) decimal digits QUESTION 5 Calculate the Power generated by the Steam Turbine. Express your answer in MW and round your numerical result to a whole number
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