A turbine receives a steady flow of steam under the follow- ing conditions: Inlet enthalpy 2800 kJ/kg; Exit enthalpy 2550 kJ/kg Inlet velocity S0 m/s; Heat lost to surroundings 25 kJ/s, mass of steam 9.1 kg/s, calculate the power developed by the turbine: (2206,3 kW) Outlet velocity 110 m/s

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
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Can you please help me with question 3

the heat transferred. in kJ/kg to the condenser cooling water
and the amount of cooling water required if the temperature
rise of the cooling water is to be 9 K.
water 4,187 kJ/kg K. (
. Specific heat of
( 2099,4 kJ/kg; 55,7 kg/kg st.)
KE+
A turbine receives a steady flow of steam under the follow-
ing conditions:
361
2000
Inlet enthalpy 2800 kJ/kg; Exit enthalpy 2550 kJ/kg
Inlet velocity S0 m/s;
Heat lost to surroundings 25 kJ/s, mass of steam 9.1 kg/s,
calculate the power developed by the turbine: (2206, 3 kW)
Outlet velocity 110 m/s
Transcribed Image Text:the heat transferred. in kJ/kg to the condenser cooling water and the amount of cooling water required if the temperature rise of the cooling water is to be 9 K. water 4,187 kJ/kg K. ( . Specific heat of ( 2099,4 kJ/kg; 55,7 kg/kg st.) KE+ A turbine receives a steady flow of steam under the follow- ing conditions: 361 2000 Inlet enthalpy 2800 kJ/kg; Exit enthalpy 2550 kJ/kg Inlet velocity S0 m/s; Heat lost to surroundings 25 kJ/s, mass of steam 9.1 kg/s, calculate the power developed by the turbine: (2206, 3 kW) Outlet velocity 110 m/s
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