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Content 
 Introduction 
 Why Supercharger? 
 Principle of Working 
 Classification 
 Roots Supercharger 
 Twin-Screw Supercharger 
 Centrifugal Supercharger 
 Supercharger over Turbocharger 
 Conclusion
Introduction 
 A Super charger is basically an air compressor used for 
forced induction of an internal combustion engine. It does 
the same work as that of a compressor, i.e. it compresses 
the air being delivered to the combustion chamber of an 
engine. 
 The greater mass flow rate provide more oxygen to support 
combustion than would be available in naturally aspirated 
engine, which allows more fuel to be provided and more 
work to be done per cycle, increasing the power output of 
the engine. 
 Thus a supercharger is extra equipment provided in an 
engine so as to boost the capacity and torque of an engine.
Why Supercharger? 
 Increases the power of an engine. 
 A supercharger spinning at 50000 rpm translates to a boost 
of about six to nine pounds per square inch(psi). 
 Increases the torque produced. 
 An efficiently working engine with supercharger can 
achieve the same speed in one third of the time taken by 
the same engine without supercharger. 
 Necessary in airplanes and jets as they have less oxygen at 
the altitudes. So they provide sufficient amount of air by 
compressing it to a higher pressure. And ensures complete 
combustion.
Principle of Working 
More Fuel + More Air 
Bigger Explosion 
Greater Horsepower
Classification 
Supercharger 
Positive 
Displacement 
Dynamic 
Compressor
Types of Supercharger Used 
Roots Supercharger 
Twin-Screw Supercharger 
Centrifugal Supercharger
Roots Supercharger 
 It consist of two meshing lobes that are fitted on two 
parallel shafts. Those lobes resembles to a lobe gear that are 
in continuous mesh. Both the lobes are meshed in such a 
manner that the air packets between those lobes and the 
side walls goes on decreasing as air moves from fill side to 
the discharge side. Thus the passing air gets squeezed. 
 As the meshing lobes spin, air trapped in the pockets 
between the lobes is carried between the fill side and the 
discharge side & large quantity of air moves into the intake 
manifold and “stack up” to create positive pressure. This 
pressurized air is received at the discharge side.
Twin-Screw Supercharger 
 Twin- Screw Supercharger consists of two meshing 
lobes that resembles a set of worm gear. The two gears 
meshing in such a way that the air pockets between 
them goes on decreasing as air moves ahead. 
 It operates by pulling the air through a pair of meshing 
lobes that resembles a set of worm gears. The rotors 
have a conical taper, which means the air pocket 
decrease in size as air moves from fill side to the 
discharge side. Thus a twin screw supercharger 
compresses the air inside the rotor housing.
Centrifugal Supercharger 
 Centrifugal supercharger consist of an impeller with several 
blades that rotate at a very high speed at around 50000 
rpm. This impeller throws the air outside due to centrifugal 
force. It also consist of a diffuser which exchanges the speed 
for high pressure. 
 As the air is drawn in the hub of the impeller, centrifugal 
forces causes it to radiate outward. The air leaves the 
impeller at high speed, but low pressure. A diffuser 
converts the high speed, low pressure air to low-speed, 
high pressure air. Thus pressurized air is received.
Supercharger over 
Turbocharger 
 Superchargers have no lag time because they are driven directly 
by the crankshaft, whereas Turbocharger suffers lag because it 
take a few moments before the exhaust gases reaches the velocity 
that is sufficient to drive the impeller/turbine. 
 Installing a turbocharger requires extension modification of the 
exhaust system, but supercharger can be bolted to the top or side 
of the engine, that makes them cheaper to install and easier to 
service and maintain. 
 No shutdown procedure is requires with supercharger as they are 
not lubricated by engine oil, so they can be shutdown normally. 
Whereas turbochargers must idle for about 30 seconds or so 
prior to shutdown so the lubricating oil has a chance to cool 
down.
Conclusion 
 Superchargers are the most cost-efficient way to 
increase horsepower. 
 Superchargers can result in power increase of 50 to 
100 percent, making them great for racing, towing 
heavy loads or just adding excitement to typical 
driving experience. 
 It is a must use component in the airplanes. 
 As supercharger ensures complete combustion, it 
greatly reduces the pollution problem.
Thank You

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Supercharger

  • 1.
  • 2. Content  Introduction  Why Supercharger?  Principle of Working  Classification  Roots Supercharger  Twin-Screw Supercharger  Centrifugal Supercharger  Supercharger over Turbocharger  Conclusion
  • 3. Introduction  A Super charger is basically an air compressor used for forced induction of an internal combustion engine. It does the same work as that of a compressor, i.e. it compresses the air being delivered to the combustion chamber of an engine.  The greater mass flow rate provide more oxygen to support combustion than would be available in naturally aspirated engine, which allows more fuel to be provided and more work to be done per cycle, increasing the power output of the engine.  Thus a supercharger is extra equipment provided in an engine so as to boost the capacity and torque of an engine.
  • 4.
  • 5. Why Supercharger?  Increases the power of an engine.  A supercharger spinning at 50000 rpm translates to a boost of about six to nine pounds per square inch(psi).  Increases the torque produced.  An efficiently working engine with supercharger can achieve the same speed in one third of the time taken by the same engine without supercharger.  Necessary in airplanes and jets as they have less oxygen at the altitudes. So they provide sufficient amount of air by compressing it to a higher pressure. And ensures complete combustion.
  • 6. Principle of Working More Fuel + More Air Bigger Explosion Greater Horsepower
  • 7. Classification Supercharger Positive Displacement Dynamic Compressor
  • 8. Types of Supercharger Used Roots Supercharger Twin-Screw Supercharger Centrifugal Supercharger
  • 9. Roots Supercharger  It consist of two meshing lobes that are fitted on two parallel shafts. Those lobes resembles to a lobe gear that are in continuous mesh. Both the lobes are meshed in such a manner that the air packets between those lobes and the side walls goes on decreasing as air moves from fill side to the discharge side. Thus the passing air gets squeezed.  As the meshing lobes spin, air trapped in the pockets between the lobes is carried between the fill side and the discharge side & large quantity of air moves into the intake manifold and “stack up” to create positive pressure. This pressurized air is received at the discharge side.
  • 10.
  • 11. Twin-Screw Supercharger  Twin- Screw Supercharger consists of two meshing lobes that resembles a set of worm gear. The two gears meshing in such a way that the air pockets between them goes on decreasing as air moves ahead.  It operates by pulling the air through a pair of meshing lobes that resembles a set of worm gears. The rotors have a conical taper, which means the air pocket decrease in size as air moves from fill side to the discharge side. Thus a twin screw supercharger compresses the air inside the rotor housing.
  • 12.
  • 13. Centrifugal Supercharger  Centrifugal supercharger consist of an impeller with several blades that rotate at a very high speed at around 50000 rpm. This impeller throws the air outside due to centrifugal force. It also consist of a diffuser which exchanges the speed for high pressure.  As the air is drawn in the hub of the impeller, centrifugal forces causes it to radiate outward. The air leaves the impeller at high speed, but low pressure. A diffuser converts the high speed, low pressure air to low-speed, high pressure air. Thus pressurized air is received.
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  • 15. Supercharger over Turbocharger  Superchargers have no lag time because they are driven directly by the crankshaft, whereas Turbocharger suffers lag because it take a few moments before the exhaust gases reaches the velocity that is sufficient to drive the impeller/turbine.  Installing a turbocharger requires extension modification of the exhaust system, but supercharger can be bolted to the top or side of the engine, that makes them cheaper to install and easier to service and maintain.  No shutdown procedure is requires with supercharger as they are not lubricated by engine oil, so they can be shutdown normally. Whereas turbochargers must idle for about 30 seconds or so prior to shutdown so the lubricating oil has a chance to cool down.
  • 16. Conclusion  Superchargers are the most cost-efficient way to increase horsepower.  Superchargers can result in power increase of 50 to 100 percent, making them great for racing, towing heavy loads or just adding excitement to typical driving experience.  It is a must use component in the airplanes.  As supercharger ensures complete combustion, it greatly reduces the pollution problem.