Multi-Stage Turbines
The steam turbine generators used today produce approximately 85% of the electricity in the United States. In a typical turbine, steam flows in at a speed near 100 miles per hour and at temperatures from 400 to 950 degrees Fahrenheit. This course describes the differences between an Impulse and Reaction turbine, why steam turbines are multi-staged, the different types of turbine blade compounding arrangements, or stages and how they relate to turbine efficiency.





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Course Details
Learning Objectives
• Identify and describe safety hazards associated with the operation of steam turbines
• Describe the theory of operation of turbines
• Identify the major components of a multi-stage steam turbine
• Describe the design of steam turbines
• Explain why steam turbines are multi-staged
• Identify and describe the different stages of a multi- stage steam turbine
Specs
Frequently Asked Questions
How does a steam turbine work?
What are the major components of a steam turbine?
What is a casing?
What is a rotor?
What are the fixed and moving blades?
What is a diaphragm?
What are journal bearings?
What is a thrust bearing?
What are shaft seals?
What is an inlet valve?
What is a speed regulating device?
What is an extraction valve?
Sample Video Transcript
The major components of a steam turbine include a casing, which contains the steam and provides support to the rotor. The turbine rotor, which holds the moving blades that convert the kinetic energy contained in the steam to rotating mechanical energy. The fixed and moving blades, which convert the kinetic energy to mechanical energy. Diaphragms that hold the fixed turbine blades. Journal bearings, which maintain the radial alignment of the rotor. A thrust bearing to maintain the axial alignment of the rotor. Shaft seals to contain the steam in the casing and keep any air out of the condensing unit. An inlet valve or valves to control the flow of steam to the turbine. And a speed regulating device.