June 18 2021

Fundamentals of Internal Combustion Engines

Fundamentals of Internal Combustion Engines
Fundamentals of Internal Combustion Ees
MP4 | Video: h264, 1280x720 | Audio: AAC, 44100 Hz
Language: English | Size: 2.58 GB | Duration: 9h 15m

Ee Performance, Power, Torque, Efficiency, Compression Ratio, Otto, Diesel, Dual, Miller cycles and more
What you'll learn
Understand How a Car Ee Work: Four-Stroke and Two-Stroke Ees
Recognize Ee Geometry and Related Teology: Piston, TDC, BDC, Bore, Stroke, Connecting Rod, Crankshaft Arm, Crank Angle, Intake and Exhaust Valves
Identify and Calculate Important Ee Performance Parameters: Power, Torque, Efficiency, Mean Effective Pressure, Volumetric Efficiency, Specific Fuel Consumption
Perform Ee Kinematics Calculations such as the instantaneous Piston Speed
Evaluate the performance of heat ee cycles for which the working fluid remains a gas throughout the entire cycle
Develop simplifying assumptions applicable to ees
Solve problems based on the Otto, Diesel, Dual and Miller cycles
Analyze Cycles based on important parameters: Efficiency vs compression ratio, imep vs compression ratio and ee load and more
Compare Otto, Diesel and Miller cycles at various operating conditions
Learn how to draw P-V and T-S diagrams for each cycle
Perform a complete analysis for an Ideal Four Stroke Ee Cycle
Model the Intake and Exhaust Strokes and Evaluate the effect of residual fraction on cycle efficiency
Requirements
A Strong Background in Eeering Thermodynamics is Required.

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