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Ebook: The Modernization Potential of Gas Turbines in the Coal-Fired Power Industry: Thermal and Economic Effectiveness

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27.01.2024
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The opportunity of repowering the existing condensing power stations by means of gas turbogenerators offers an important opportunity to considerably improvement of their energy efficiency. The Modernization Potential of Gas turbines in the Coal-Fired Power Industry presents the methodology, calculation procedures and tools used to support enterprise planning for adapting power stations to dual-fuel gas-steam combined-cycle technologies.

Both the conceptual and practical aspects of the conversion of existing coal-fired power plants is covered. Discussions of the feasibility, advantages and disadvantages and possible methods are supported by chapters presenting equations of energy efficiency for the conditions of repowering a power unit by installing a gas turbogenerator in a parallel system and the results of technical calculations involving the selection heating structures of heat recovery steam generators. A methodology for analyzing thermodynamic and economic effectiveness for the selection of a structure of the heat recovery steam generator for the repowered power unit is also explained.

The Modernization Potential of Gas turbines in the Coal-Fired Power Industry is an informative monograph written for researchers, postgraduate students and policy makers in power engineering.




The opportunity of repowering the existing condensing power stations by means of gas turbogenerators offers an important opportunity to considerably improvement of their energy efficiency. The Modernization Potential of Gas turbines in the Coal-Fired Power Industry presents the methodology, calculation procedures and tools used to support enterprise planning for adapting power stations to dual-fuel gas-steam combined-cycle technologies.

Both the conceptual and practical aspects of the conversion of existing coal-fired power plants is covered. Discussions of the feasibility, advantages and disadvantages and possible methods are supported by chapters presenting equations of energy efficiency for the conditions of repowering a power unit by installing a gas turbogenerator in a parallel system and the results of technical calculations involving the selection heating structures of heat recovery steam generators. A methodology for analyzing thermodynamic and economic effectiveness for the selection of a structure of the heat recovery steam generator for the repowered power unit is also explained.

The Modernization Potential of Gas turbines in the Coal-Fired Power Industry is an informative monograph written for researchers, postgraduate students and policy makers in power engineering.




The opportunity of repowering the existing condensing power stations by means of gas turbogenerators offers an important opportunity to considerably improvement of their energy efficiency. The Modernization Potential of Gas turbines in the Coal-Fired Power Industry presents the methodology, calculation procedures and tools used to support enterprise planning for adapting power stations to dual-fuel gas-steam combined-cycle technologies.

Both the conceptual and practical aspects of the conversion of existing coal-fired power plants is covered. Discussions of the feasibility, advantages and disadvantages and possible methods are supported by chapters presenting equations of energy efficiency for the conditions of repowering a power unit by installing a gas turbogenerator in a parallel system and the results of technical calculations involving the selection heating structures of heat recovery steam generators. A methodology for analyzing thermodynamic and economic effectiveness for the selection of a structure of the heat recovery steam generator for the repowered power unit is also explained.

The Modernization Potential of Gas turbines in the Coal-Fired Power Industry is an informative monograph written for researchers, postgraduate students and policy makers in power engineering.


Content:
Front Matter....Pages i-viii
Introduction....Pages 1-3
Thermodynamic Fundamentals for Production of Electric Power in Hierarchical j-Cycle Systems....Pages 5-14
In-Series or Parallel System?....Pages 15-19
Energy Efficiency of Repowering a Power Unit by Installing a Gas Turbogenerator in a Parallel System....Pages 21-23
Selection of an Optimum Gas Turbogenerator for the Repowered Power Unit....Pages 25-44
Selection of the Structure of the Heat Recovery Steam Generator for the Repowered Power Unit....Pages 45-51
Comparison of Specific Cost of Producing Electricity in a 370 MW Power Unit Adapted to Dual–Fuel Gas–Steam System and in a New One Operating Under Supercritical Parameters....Pages 53-63
Summary and Final Conclusions....Pages 65-66
Back Matter....Pages 67-69


The opportunity of repowering the existing condensing power stations by means of gas turbogenerators offers an important opportunity to considerably improvement of their energy efficiency. The Modernization Potential of Gas turbines in the Coal-Fired Power Industry presents the methodology, calculation procedures and tools used to support enterprise planning for adapting power stations to dual-fuel gas-steam combined-cycle technologies.

Both the conceptual and practical aspects of the conversion of existing coal-fired power plants is covered. Discussions of the feasibility, advantages and disadvantages and possible methods are supported by chapters presenting equations of energy efficiency for the conditions of repowering a power unit by installing a gas turbogenerator in a parallel system and the results of technical calculations involving the selection heating structures of heat recovery steam generators. A methodology for analyzing thermodynamic and economic effectiveness for the selection of a structure of the heat recovery steam generator for the repowered power unit is also explained.

The Modernization Potential of Gas turbines in the Coal-Fired Power Industry is an informative monograph written for researchers, postgraduate students and policy makers in power engineering.


Content:
Front Matter....Pages i-viii
Introduction....Pages 1-3
Thermodynamic Fundamentals for Production of Electric Power in Hierarchical j-Cycle Systems....Pages 5-14
In-Series or Parallel System?....Pages 15-19
Energy Efficiency of Repowering a Power Unit by Installing a Gas Turbogenerator in a Parallel System....Pages 21-23
Selection of an Optimum Gas Turbogenerator for the Repowered Power Unit....Pages 25-44
Selection of the Structure of the Heat Recovery Steam Generator for the Repowered Power Unit....Pages 45-51
Comparison of Specific Cost of Producing Electricity in a 370 MW Power Unit Adapted to Dual–Fuel Gas–Steam System and in a New One Operating Under Supercritical Parameters....Pages 53-63
Summary and Final Conclusions....Pages 65-66
Back Matter....Pages 67-69
....
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