1- For the following design conditions:- Condenser heat load (Qc) = 293 MW Condenser Pressure (Pcond) = 0.06 bar Cooling Water inlet temperature (tw) = 25 C° Cooling Water velocity (Vw) = 2 m/s Number of Passes (N) = Single Tube Diameter (D) = 25 mm Tube Length (L) = 15 m Tubes Cleanliness factor (Fclean) = 0.85 Overall heat transfer coefficient (U,) = 4000 W /m²C°. Calculate the following:- %3D %3D %3D %3D %3D a. Condenser Surface area b. Cooling water mass flow rate c. Condenser effectiveness

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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1- For the following design conditions:-
Condenser heat load (Qc) = 293 MW
Condenser Pressure (Pcond) = 0.06 bar
Cooling Water inlet temperature (tw,) = 25 C°
Cooling Water velocity (Vw) = 2 m/s
Number of Passes (N) = Single
Tube Diameter (D)
Tube Length (L) = 15 m
Tubes Cleanliness factor (Fclean) = 0.85
Overall heat transfer coefficient (U,) = 4000 W /m²C°.
Calculate the following:-
= 25 mm
a. Condenser Surface area
b. Cooling water mass flow rate
c. Condenser effectiveness
Transcribed Image Text:1- For the following design conditions:- Condenser heat load (Qc) = 293 MW Condenser Pressure (Pcond) = 0.06 bar Cooling Water inlet temperature (tw,) = 25 C° Cooling Water velocity (Vw) = 2 m/s Number of Passes (N) = Single Tube Diameter (D) Tube Length (L) = 15 m Tubes Cleanliness factor (Fclean) = 0.85 Overall heat transfer coefficient (U,) = 4000 W /m²C°. Calculate the following:- = 25 mm a. Condenser Surface area b. Cooling water mass flow rate c. Condenser effectiveness
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