Flow And Combustion In Advanced Gas Turbine Combustors

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Flow and Combustion in Advanced Gas Turbine Combustors

Author: Johannes Janicka
language: en
Publisher: Springer Science & Business Media
Release Date: 2012-10-29
With regard to both the environmental sustainability and operating efficiency demands, modern combustion research has to face two main objectives, the optimization of combustion efficiency and the reduction of pollutants. This book reports on the combustion research activities carried out within the Collaborative Research Center (SFB) 568 “Flow and Combustion in Future Gas Turbine Combustion Chambers” funded by the German Research Foundation (DFG). This aimed at designing a completely integrated modeling and numerical simulation of the occurring very complex, coupled and interacting physico-chemical processes, such as turbulent heat and mass transport, single or multi-phase flows phenomena, chemical reactions/combustion and radiation, able to support the development of advanced gas turbine chamber concepts
Combustion Instabilities in Gas Turbine Engines

Author: Timothy C. Lieuwen
language: en
Publisher: AIAA (American Institute of Aeronautics & Astronautics)
Release Date: 2005
This book offers gas turbine users and manufacturers a valuable resource to help them sort through issues associated with combustion instabilities. In the last ten years, substantial efforts have been made in the industrial, governmental, and academic communities to understand the unique issues associated with combustion instabilities in low-emission gas turbines. The objective of this book is to compile these results into a series of chapters that address the various facets of the problem. The Case Studies section speaks to specific manufacturer and user experiences with combustion instabilities in the development stage and in fielded turbine engines. The book then goes on to examine The Fundamental Mechanisms, The Combustor Modeling, and Control Approaches.
Gas Turbines for Electric Power Generation

Author: S. Can Gülen
language: en
Publisher: Cambridge University Press
Release Date: 2019-02-14
Everything you wanted to know about industrial gas turbines for electric power generation in one source with hard-to-find, hands-on technical information.