Thermal Engineering in Power Systems

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Thermal Engineering in Power Systems


Introduction

Thermal Engineering in Power Systems
Thermal Engineering in Power Systems



    Research and development in thermal engineering for power systems are of significant importance to many scientists who work in power-related industries and laboratories. This book focuses on a variety of research areas including Components of Compressors and Turbines that are used for electric power systems and aero engines, Fuel Cells, Energy Conversion, and Energy Reuse and Recycling Systems.

To be competitive in today’s market, power systems need to reduce operating costs, increase capacity and deal with many other tough issues. Heat Transfer and fluid flow issues are of great significance to power systems. Design and R&D engineers in the power industry will therefore find this state-of-the-art book on those issues very useful in their efforts to develop sustainable energy systems.


Workplace Safety Answer Manual Q&A


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Table Of Contents


Chapter 1 Relevance of heat transfer and heat exchangers for the development of sustainable energy systems


Chapter 2 Advanced technologies for clean and efficient energy conversion in power systems


Chapter 3 Virtual engineering and the design of power systems


Chapter 4 Steam power plants


Chapter 5 Enhancement of nuclear power plant safety by condensation-driven passive heat removal systems


Chapter 6 Modern CFD application on aerothermal engineering aspects of natural draft cooling towers


Chapter 7 Innovative gas turbine cooling techniques


Chapter 8 Hot gas path heat transfer characteristics/active cooling of turbine components


Chapter 9 Design and optimization of Turbo compressors


Chapter 10 Advances in understanding the flow in a centrifugal compressor impeller and improved design


Chapter 11 Thermal engineering in hybrid car systems



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