Advanced Brayton Cycle (Gas Turbine) for Power Application and Combustion Analysis
1h! Run Time
Employees
and
Supervisors
Provided
What you'll learn
Skills covered in this course
Description
The Brayton cycle, also called the Joule cycle, is the ideal cycle behind the simple gas turbine used for stationary power generation.
What this course covers:
- The open, simple Brayton cycle for stationary power generation
- Working fluids including air, argon, helium and nitrogen
- Combustion of six fuels: carbon, hydrogen, sulfur, coal, oil and gas
- Thermal efficiency derivation and the T-s diagram
- Performance trends versus compression ratio, turbine inlet temperature and mass flow rate
Output data, tables and plots let you determine the major cycle and combustion performance trends.
Table of Contents
Brayton Cycle (Gas Turbine) for Power Application
Analysis
Assumptions
Governing Equations
Input Data
Results
Conclusions
Combustion
Analysis
Case Study A
Case Study B
Case Study C
Case Study D
Assumptions
Governing Equations
Input Data
Results
Case Study A
Case Study B
Case Study C
Case Study D
Figures
Conclusions
System Requirements
See System Requirements in the Coggno Knowledge Base