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Thermal power plants-advanced applications / edited by Harinirina Randrianarisoa.

Contributor(s): Randrianarisoa, Harinirina, editorMaterial type: TextTextPublisher: Oakville, Ontario : Arcler Press, c2018Description: xix, 271 pages : color illustrationsContent type: text Media type: computer Carrier type: online resourceSubject(s): Steam power plants | Steam -- Environmental aspectsLOC classification: EBOP TJ 395 | T54 2018Online resources: Electronic Resources https://www.bibliotex.com/product/thermal-power-plants-advanced-applications50102596
Contents:
Chapter 1: Hybrid Wind Power Balance Control Strategy Using Thermal Power, Hydro Power and Flow Batteries Chapter 2: Performance Comparison on Repowering of a Steam Power Plant With Gas Turbines and Solid Oxide Fuel Cells Chapter 3: Thermal System Analysis and Optimization of Large-Scale Compressed Air Energy Storage (Caes) Chapter 4: A Novel Modeling of Molten-Salt Heat Storage Systems in Thermal Solar Power Plants Chapter 5: Analyzing the Technology of Using Ash and Slag Waste from Thermal Power Plants in the Production of Building Ceramics Chapter 6: The Use of Fly Ash the Thermal Power Plants in the Construction Chapter 7: High-Flux/High-Temperature Solar Thermal Conversion: Technology Development and Advanced Applications Chapter 8: Intelligent Prediction of Fan Rotation Stall in Power Plants Based on Pressure Sensor Data Measured in-Situ Chapter 9: Modeling and Optimization of the Medium-Term Units Commitment of Thermal Power Chapter 10: Thermal Tracking In Mobile Robots for Leak Inspection Activities Chapter 11: Dynamic Modeling of the Solar Field in Parabolic Trough Solar Power Plants Chapter 12: Cost Effective Operating Strategy for Unit Commitment and Economic Dispatch of Thermal Power Plants with Cubic Cost Functions Using TLBO Algorithm Chapter 13: Optimisation of Electrical Distribution System by Using Solar Thermal Powered Systems and its Impact on Electrical Distribution Feeders Chapter 14: A Hybrid Search Algorithm for Midterm Optimal Scheduling of Thermal Power Plants Chapter 15: Enhancing Energy Efficiency of Boiler Feed Pumps in Thermal Power Plants Through Operational Optimization and Energy Conservation Chapter 16: Mathematical Safety Assessment Approaches for Thermal Power Plants Chapter 17: Preferred Economic Dispatch of Thermal Power Units Chapter 18: A Pilot-Scale Study of Dynamic Response Scenarios for the Flexible Operation of Post-Combustion CO2 Capture Chapter 19: Contributions to the Analysis and the Supervision of a Thermal Power Plant Chapter 20: Heat Transfer in Fuel Oil Storage Tank at Thermal Power Plants With Local Fuel Heating Chapter 21 Development of Energy Efficient Technologies for Burning Coal in Modern Thermal Power Plants and Efficiency Assessment Tools Chapter 22: Improvement of Environmental Aspects of Thermal Power Plant Operation by Advanced Control Concepts
Summary: A thermal power station is a power plant in which heat energy is converted to electric power. In most of the world the prime mover is steam driven. Water is heated, turns into steam and spins a steam turbine which drives an electrical generator. This book deals with various aspects of a thermal power plant, providing a new dimension to the subject, with focus on operating practices and troubleshooting, as well as technology and design.
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Item type Current location Collection Shelving location Call number Copy number Status Date due Barcode
E-Books E-Books Cavite State University - CCAT Campus
Electronic Resources ER EBOP TJ 395 T54 2018 (Browse shelf) 1 copy Available EBOP0000044

To access the E-Book : https://www.bibliotex.com/ (Log-in/Register is required).

Includes references and index.

Chapter 1: Hybrid Wind Power Balance Control Strategy Using Thermal Power, Hydro Power and Flow Batteries
Chapter 2: Performance Comparison on Repowering of a Steam Power Plant With Gas Turbines and Solid Oxide Fuel Cells
Chapter 3: Thermal System Analysis and Optimization of Large-Scale Compressed Air Energy Storage (Caes)
Chapter 4: A Novel Modeling of Molten-Salt Heat Storage Systems in Thermal Solar Power Plants
Chapter 5: Analyzing the Technology of Using Ash and Slag Waste from Thermal Power Plants in the Production of Building Ceramics
Chapter 6: The Use of Fly Ash the Thermal Power Plants in the Construction
Chapter 7: High-Flux/High-Temperature Solar Thermal Conversion: Technology Development and Advanced Applications
Chapter 8: Intelligent Prediction of Fan Rotation Stall in Power Plants Based on Pressure Sensor Data Measured in-Situ
Chapter 9: Modeling and Optimization of the Medium-Term Units Commitment of Thermal Power
Chapter 10: Thermal Tracking In Mobile Robots for Leak Inspection Activities
Chapter 11: Dynamic Modeling of the Solar Field in Parabolic Trough Solar Power Plants
Chapter 12: Cost Effective Operating Strategy for Unit Commitment and Economic Dispatch of Thermal Power Plants with Cubic Cost Functions Using TLBO Algorithm
Chapter 13: Optimisation of Electrical Distribution System by Using Solar Thermal Powered Systems and its Impact on Electrical Distribution Feeders
Chapter 14: A Hybrid Search Algorithm for Midterm Optimal Scheduling of Thermal Power Plants
Chapter 15: Enhancing Energy Efficiency of Boiler Feed Pumps in Thermal Power Plants Through Operational Optimization and Energy Conservation
Chapter 16: Mathematical Safety Assessment Approaches for Thermal Power Plants
Chapter 17: Preferred Economic Dispatch of Thermal Power Units
Chapter 18: A Pilot-Scale Study of Dynamic Response Scenarios for the Flexible Operation of Post-Combustion CO2 Capture
Chapter 19: Contributions to the Analysis and the Supervision of a Thermal Power Plant
Chapter 20: Heat Transfer in Fuel Oil Storage Tank at Thermal Power Plants With Local Fuel Heating
Chapter 21 Development of Energy Efficient Technologies for Burning Coal in Modern Thermal Power Plants and Efficiency Assessment Tools
Chapter 22: Improvement of Environmental Aspects of Thermal Power Plant Operation by Advanced Control Concepts

A thermal power station is a power plant in which heat energy is converted to electric power. In most of the world the prime mover is steam driven. Water is heated, turns into steam and spins a steam turbine which drives an electrical generator. This book deals with various aspects of a thermal power plant, providing a new dimension to the subject, with focus on operating practices and troubleshooting, as well as technology and design.

EBOP00044 1

In English text.

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