The following data pertains to a turbo-jet system flying at 9500 m height with a speed of 800 km/hr and propulsive n=55%. Taking the following data: P(density of air at 9500 m height) = 0.17 kg/m', Drag on the plane= 6.1 kN, Calorific value of fuel used = 46 MJ/kg. Find out the following: (i) Absolute velocity of the jet, (ii) Mass of air compressed/min, (iii) Diameter of the jet, (iv) Power output of the turbine unit kW and (v) air-fuel ratio used.

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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The following data pertains to a turbo-jet system
flying at 9500 m height with a speed of 800 km/hr
and propulsive n355%. Taking the following data:
p(density of air at 9500 m height)= 0.17 kg/m', Drag
%3D
on the plane= 6.1 kN, Calorific value of fuel used
!!
= 46 MJ/kg. Find out the following: (i) Absolute
velocity of the jet, (ii) Mass of air compressed/min, -
(iii) Diameter of the jet, (iv) Power output of the
turbine unit kW and (v) air-fuel ratio used.
Transcribed Image Text:The following data pertains to a turbo-jet system flying at 9500 m height with a speed of 800 km/hr and propulsive n355%. Taking the following data: p(density of air at 9500 m height)= 0.17 kg/m', Drag %3D on the plane= 6.1 kN, Calorific value of fuel used !! = 46 MJ/kg. Find out the following: (i) Absolute velocity of the jet, (ii) Mass of air compressed/min, - (iii) Diameter of the jet, (iv) Power output of the turbine unit kW and (v) air-fuel ratio used.
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