Understanding Internal Combustion Engines: A Comprehensive Overview

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Explore the intricate world of Internal Combustion Engines (I.C. Engine), including their classification, components, terminology, and operation cycles. Delve into the various types, arrangements, and applications of I.C. engines, from automobiles to aircraft engines, and uncover the key principles and mechanisms behind these power-producing devices. Discover the fundamental concepts such as bore, stroke, compression ratio, and more that drive these mechanical marvels.


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  1. I. C.ENGINE

  2. POWER PRODUCINGDEVICES I.C.ENGINE FOUR STROKE PETROL & DIESEL ENGINE TWO STROKE PETROL & DIESELENGINE TURBINE IMPULSE REACTION BOILERS

  3. I.C.ENGINE ENGINE Mechanical device which converts one formof energy intoanotherform I.C.ENGINE Engine in which combustion take place inside engine cylinder is called IC engine. E.g.-Aircraftengine, AutomobileEngines

  4. I.C.ENGINE

  5. CLASSIFICATION OF I.C.ENGINE 1. CYCLE OFOPERATION Two strokeengine Four strokeengine 2 .T H E R M O D Y N A M I CCYCLE Otto cycle Diesel cycle Dualcycle 3 .M E T H O D OF IGNITION S.I. ENGINE C,I.ENGINE 4.NO. OFCYLINDERS Single Multi 5.COOLINGSYSTEM Air cooled Water cooled Oilcooled

  6. CLASSIFICATION OF I.C.ENGINE FUELUSED Petrol Diesel Gas SPEED High speed Lows peed Mediumspeed APPLICATION Automotive engines Aircraft engines Marine application Generatorsets

  7. CLASSIFICATION OF I.C.ENGINE ARRANGEMENT OFCYLINDERS Vertical Horizantal V-engine Radialengine Opposedcylinder Opposedpiston

  8. TERMINOLOGY BORE STROKE TDC BDC CLEARENCEVOLUME SWEPTVOLUME COMPRESSIONRATIO

  9. COMPONENTS OF FOUR-STROKE ENGINES Camshaft IntakeValve ExhaustValve ValveCover SparkPlug IntakePort ExhaustPort Head Piston ConnectingRod Coolant RodBearings Engine Block Crankshaft Next Diagram OilPan OilSump Back

  10. FOUR STROKE CYCLE 10 Intake Compression Power Exhaust

  11. INTAKE STROKE 11 Intake valveopens. Piston turn ofcrankshaft. moves down, A vacuum the cylinder. is created in Atmospheric pushes mixture cylinder. pressure air/fuel into the the

  12. COMPRESSION STROKE 12 VALVES CLOSE. PISTON MOVES UP, TURN OF CRANKSHAFT. AIR/FUEL MIXTURE IS COMPRESSED. FUEL STARTS TO VAPORIZE AND HEAT BEGINS TO BUILD.

  13. POWER STROKE 13 Valves remainclosed. Spark plug fires igniting fuelmixture. Piston moves down, turn of crankshaft. Heat is convertedto mechanicalenergy.

  14. EXHAUST STROKE 14 Exhaustvalve opens. Piston move up, crankshaft makes turn. Exhaust gasesare pushed out polluting the atmosphere.

  15. FOUR STROKE CYCLE ANIMATION 15

  16. TWO STROKEENGINE

  17. TWO STROKE ANIMATION 17

  18. DIESEL ANIMATION 18

  19. DIESELENGINE PETROL V/S PETROL ENGINE(S.I.) DIESELENGINE(C.I.) Ottocycle Air fuel mixture DIESEL CYCLE ONLY AIR SUCKED DURING SUCTION suctionstroke spark plug isneeded C.R.=6-12 Lowefficiency Lightweight Cheap Less vibration &noise Motor cycles, cars,light duty vehicles STROKE NOSPARK PLUG NEEDED C.R.=14-22 HIGHEFFICIENCY HEAVY COSTLY MORE TRUCKS,BUSES,GENSETS

  20. FOURSTROKES TW OSTR OKES V/S FOURSTROKES TWOSTROKES Cycle-2rev &4strokes 1 Power stroke per 2 Rev valves Complicated,heavy ,costly Lesspower Flatpiston Moreefficiency Cars,bikes,trucks,buses CYCLE-1 REV & 2STROKES 1 POWER STROKE PER REV. PORTS SIMPLE,LIGHT WEIGHT , LOW COST MORE POWER FOR SAME SIZE ENGINE PISTON SHAPE CROWN LESS EFFICIENCY E.G, MOPEDS, SCOOTERS

  21. WHAT IS A TURBINE? -ATurbineisadevicewhichconvertstheheatenergy ofsteamintothekineticenergy&thento rotational energy. -TheMotivePowerinasteamturbineisobtainedby therateofchangeinmomentumofahighvelocityjet ofsteamimpingingonacurvedbladewhichisfreeto rotate.

  22. IMPULSETURBINE a

  23. IMPULSE REACTION TURBINE

  24. REACTION IMPULSE V/S

  25. POWER CONSUMINGDEVICES PUMP RECIPROCATING CENTRIFUGAL COMPRESSOR RECIPROCATING REFRIGEATOR AIRCONDITIONER WINDOW AIRCONDITIONER

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