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Friday, 8 February 2013

gas turbine engines

Assignment 1

(P1)

The basic terms of jet-black propulsion kitty be explained using Newtons second and third gear laws of motion. The third law declares that for every action there is an mate an opposite chemical reaction, and the second law states the relationship amidst force(f), mass(m) and acceleration(a) shown in the formula F = m x a. To put this theory into context for jet propulsion, the air steam is forced to accelerate whilst its travelling through and through the railway locomotive which means its kinetic energy is increased; therefore it creates reaction propulsion from ejecting the mass of bragconade to which the aircraft reacts with an equal and opposite thrust. The amphetamine of the jet efflux is important in terms of the knowing aircraft velocity range as the overall propulsive cleverness percentage is highest when the engine emits an exhaust jet at a speed that is the same as, or nearly the same as, the aircraft velocity. This propulsive efficiency (PE) can be calculated using the succeeding(a):
PE= Work done in moving the aircraft forward X blow%
Work done in the moving jet stream rearwards
Or:
PE= Twice the aircraft speed X 100%
Aircraft speed + jet stream speed


(P2 and part M1)

This is a field illustrating the typical working cycle of pressure and velocity changes through an aircraft gas turbine engine.

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(P3)

Compressor Sucks the air in, Compresses the incoming air to high pressure.
conflagration chamber Fuel injectors release a steady descend of fuel, burn the fuel and produces high-pressure, high-velocity gas.
Turbine - Extracts the energy from the high-pressure, high-velocity gas flowing from the combustion chamber, turbines drives the compressor.


(M1)

The working cycle of a gas turbine engine known as the Brayton cycle contains three components; a gas compressor, a combustion chamber and expansion turbine. It describes the occurrences that photograph place as the energy is released from the fuel. This process is achieved by close air being sucked...If you want to get a wax essay, order it on our website: Ordercustompaper.com



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