OTTO CYCLE & Internal Combustion Engines in 10 Minutes!

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Gasoline Engine
Internal Combustion Engine
Four Stroke Engine
Air Fuel Mixture
Otto Cycle
Exhaust Valve
Intake Valve
Spark Plug

Links Mentioned During the Lecture:

0:00 Background
0:24 Internal Combustion Engine Stages
2:15 The Ideal Otto Cycle
2:48 Assumptions for Ideality
3:37 Pv-Diagram for Otto Cycles
3:52 Ts-Diagram for Otto Cycles
4:22 TDC and BDC
4:45 Compression Ratio
4:55 Energy Conservation
6:59 Isentropic Relationships
7:37 Otto Cycle Example
8:15 Solution

Previous Lecture:
27. Intercooling, Reheating, and Regenerators:

Next Lecture:
29. Standard Diesel Cycle

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Other Thermodynamics Lectures:

19. Transient Systems:
30. Rankine Cycle:
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Other Engineering Courses (Playlists):

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CORRECTIONS: Starting at 9:16, the values should be u2 = 514.497 kJ/kg, u3 = 1234.5 kJ/kg, and T3 = 1531.45 K.

LessBoringLectures
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I just found your channel the other day. This is fantastic content! Thank you for providing less boring lectures. You are a GOAT <3

kingjonjones
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I am writing in 2days and Ihve faithin these videos

ilonabija
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Got one of those. Exhaust sounds different! Gets bloody good KMPL!

MrShaneSunshine
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Nice one, great to watch your video, love from India, which app are you using for this

QualityInfo-rmlg
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whats better for otto cycle use PV=nRT or using tables?Because if we want to calculate MEP we need V1

xrhsts