Power Cycles and Power Cycle Components/Processes Analysis
1h! Run Time
Employees
and
Supervisors
Provided
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What you'll learn
Skills covered in this course
Description
Work through the ideal, simple power cycles and their core processes using air as the working fluid.
What this course covers:
- The Carnot, Brayton, Otto and Diesel power cycles
- Thermal efficiency derivation for each cycle
- Compression, combustion and expansion process analysis
- T-s diagrams and major performance trends
- Combustion products, flame temperature and heating values
A technical reference for engineers studying power cycle performance.
Table of Contents
Carnot Cycle
Analysis
Assumptions
Governing Equations
Input Data
Results
Conclusions
Brayton Cycle (Gas Turbine) for Power Application
Analysis
Assumptions
Governing Equations
Input Data
Results
Conclusions
Brayton Cycle (Gas Turbine) for Propulsion Application
Analysis
Assumptions
Governing Equations
Input Data
Results
Conclusions
Otto Cycle
Analysis
Assumptions
Governing Equations
Input Data
Results
Conclusions
Diesel Cycle
Analysis
Assumptions
Governing Equations
Input Data
Results
Conclusions
Compression
Analysis
Assumptions
Governing Equations
Input Data
Results
Conclusions
Combustion
Analysis
Assumptions
Governing Equations
Input Data
Results
Figures
Conclusions
Expansion
Analysis
Assumptions
Governing Equations
Input Data
Results
Conclusions
System Requirements
See System Requirements in the Coggno Knowledge Base