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INTERNAL COMBUSTION ENGINES LECTURER PROF.Dr. DEMIR BAYKA.

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Presentation on theme: "INTERNAL COMBUSTION ENGINES LECTURER PROF.Dr. DEMIR BAYKA."— Presentation transcript:

1 INTERNAL COMBUSTION ENGINES LECTURER PROF.Dr. DEMIR BAYKA

2 MECHANISM OF COMBUSTION COMBUSTION IS INITIATED BY A SPARK IN SI ENGINES COMBUSTION IS INITIATED BY AUTOIGNITION IN CI ENGINES

3 COMBUSTION IN SI ENGINES THERE ARE 3 MAIN PHASES 1. 2. 3. FLAME NUCLEUS FORMATION FLAME PROPAGATION FLAME TERMINATION

4 COMBUSTION IN SI ENGINES 1.FLAME NUCLEUS FORMATION SPARK IGNITION FLAME DEVELOPMENT a) b)

5 SPARK PLUG

6 L V=20 000 - 24 000 volts L = 0.5 - 1.0 mm

7 BREAKDOWN PHASE IONIZING STREAMERS IMPEDANCE OF THE GAP DECREASES DUE TO STREAMERS

8 ARC PHASE THIN CYLINDRICAL PLASMA EXPANDS THIS IS DUE TO HEAT CONDUCTION AND DIFFUSION

9 GLOW DISCHARGE PHASE IGNITION COIL DUMPS ITS ENERGY

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11 BREAKDOWN PHASE IONIZING STREAMERS TEMPERATURE IN STREAMERS IS AROUND 60 000 K

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13 ARC PHASE THIN CYLINDRICAL PLASMA EXPANDS TEMPERATURE OF GAS IN THE ARC IS AROUND 6000 K

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15 GLOW DISCHARGE PHASE IGNITION COIL DUMPS ITS ENERGY TEMPERATURE OF THE GAS IS AROUND 3000 K

16 FLAME NUCLEUS HEAT CONDUCTION & DIFFUSION T>2500 K Q

17 FLAME NUCLEUS LAMINAR PROPAGATION T>2500 K Q UNTIL VOLUME > 1 % OF Vmin

18 TURBULENT FLAME FRONT SPARK PLUG

19 STAGES OF TURBULENT FLAME TRAVEL UNBURNED GAS MIXTURE (REACTANTS)

20 MAXIMUM PRESSURE AND TEMP ARE REACHED AFTER TDC (15 - 20 DEG)

21 FLAME TERMINATION AND AFTERBURNING

22 IGNITION TIMING


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