Top Banner
Cogeneration & Combined Cycles Prof. Osama A El Masry Mechanical Engineering Department ME332 Operation and Management of Power Plants
16

Cogeneration & Combined Cycles Prof. Osama A El Masry Mechanical Engineering Department ME332 Operation and Management of Power Plants.

Dec 27, 2015

Download

Documents

Eugene Lindsey
Welcome message from author
This document is posted to help you gain knowledge. Please leave a comment to let me know what you think about it! Share it to your friends and learn new things together.
Transcript
Page 1: Cogeneration & Combined Cycles Prof. Osama A El Masry Mechanical Engineering Department ME332 Operation and Management of Power Plants.

Cogeneration & Combined Cycles

Prof. Osama A El Masry

Mechanical Engineering DepartmentME332 Operation and Management of Power Plants

Page 2: Cogeneration & Combined Cycles Prof. Osama A El Masry Mechanical Engineering Department ME332 Operation and Management of Power Plants.

Prof. O. El Masry

An Ideal Cogeneration PlantAn Ideal Cogeneration Plant

(Fig. 9-21)

Page 3: Cogeneration & Combined Cycles Prof. Osama A El Masry Mechanical Engineering Department ME332 Operation and Management of Power Plants.

Prof. O. El Masry

Schematic and T-s Diagram for Cogeneration Cycle

(Fig. 9-23)

Page 4: Cogeneration & Combined Cycles Prof. Osama A El Masry Mechanical Engineering Department ME332 Operation and Management of Power Plants.

Prof. O. El Masry

Combined Cycles•The overall thermal efficiency of a power plant can be increased by using binary cycles or combined cycles.

•A binary cycle is composed of two separate cycles, one at high temperatures (topping cycle) and the other at relatively low temperatures.

•The most common combined cycle is the gas-steam combined cycle where a gas-turbine cycle operates at the high-temperature range and a steam-turbine cycle at the low-temperature range.

Page 5: Cogeneration & Combined Cycles Prof. Osama A El Masry Mechanical Engineering Department ME332 Operation and Management of Power Plants.

Mercury-Water Binary Vapor Cycle

Mercury-Water Binary Vapor Cycle

Prof. O. El Masry

(Fig. 9-24)

Page 6: Cogeneration & Combined Cycles Prof. Osama A El Masry Mechanical Engineering Department ME332 Operation and Management of Power Plants.

Prof. O. El Masry

Combined Cycles• The gas-steam combined cycle uses a gas-turbine cycle operating in a high-temperature range and a steam-turbine cycle in a low-temperature range.

•Steam is heated by the high-temperature exhaust gases leaving the gas turbine.

•Combined cycles have a higher thermal efficiency than the steam- or gas-turbine cycles operating alone.

Page 7: Cogeneration & Combined Cycles Prof. Osama A El Masry Mechanical Engineering Department ME332 Operation and Management of Power Plants.

Prof. O. El Masry

Combined Gas-Steam Power Plant

Page 8: Cogeneration & Combined Cycles Prof. Osama A El Masry Mechanical Engineering Department ME332 Operation and Management of Power Plants.

HRSG(Heat Recovery Steam Generator)

Page 9: Cogeneration & Combined Cycles Prof. Osama A El Masry Mechanical Engineering Department ME332 Operation and Management of Power Plants.

Types of HRSG

2 bar 20 bar

1 ton/h 10 ton/h

up to 180 bar

150 300 ton/h

Page 10: Cogeneration & Combined Cycles Prof. Osama A El Masry Mechanical Engineering Department ME332 Operation and Management of Power Plants.

Configurations of HRHG

Evaporator section

Page 11: Cogeneration & Combined Cycles Prof. Osama A El Masry Mechanical Engineering Department ME332 Operation and Management of Power Plants.

Superheater section :

Page 12: Cogeneration & Combined Cycles Prof. Osama A El Masry Mechanical Engineering Department ME332 Operation and Management of Power Plants.

Economizer section :

Economizer designs would normally follow along with the evaporator type that is being used and be similar in design to the superheater. The configurations would be similar to the ones shown above for the superheaters

Page 13: Cogeneration & Combined Cycles Prof. Osama A El Masry Mechanical Engineering Department ME332 Operation and Management of Power Plants.

Preparing a flow schematic for the HRSG :

• Pinch point .• Approach point .

Page 14: Cogeneration & Combined Cycles Prof. Osama A El Masry Mechanical Engineering Department ME332 Operation and Management of Power Plants.

Single pressure :

Page 15: Cogeneration & Combined Cycles Prof. Osama A El Masry Mechanical Engineering Department ME332 Operation and Management of Power Plants.
Page 16: Cogeneration & Combined Cycles Prof. Osama A El Masry Mechanical Engineering Department ME332 Operation and Management of Power Plants.