Stationary Gas Turbine Alternative Fuels
Author: J. S. Clark
Publisher: ASTM International
Published: 1983
Total Pages: 363
ISBN-13:
DOWNLOAD EBOOKRead and Download eBook Full
Author: J. S. Clark
Publisher: ASTM International
Published: 1983
Total Pages: 363
ISBN-13:
DOWNLOAD EBOOKAuthor: John S. Clark
Publisher: ASTM International
Published: 1983-12
Total Pages: 374
ISBN-13: 9780803102583
DOWNLOAD EBOOKAuthor: John S. Clark
Publisher:
Published: 1983
Total Pages: 361
ISBN-13:
DOWNLOAD EBOOKAuthor:
Publisher:
Published: 1983
Total Pages: 361
ISBN-13:
DOWNLOAD EBOOKAuthor: Arthur H. Lefebvre
Publisher: CRC Press
Published: 2010-04-26
Total Pages: 560
ISBN-13: 1420086057
DOWNLOAD EBOOKReflecting the developments in gas turbine combustion technology that have occurred in the last decade, Gas Turbine Combustion: Alternative Fuels and Emissions, Third Edition provides an up-to-date design manual and research reference on the design, manufacture, and operation of gas turbine combustors in applications ranging from aeronautical to po
Author: National Academies of Sciences, Engineering, and Medicine
Publisher: National Academies Press
Published: 2020-04-19
Total Pages: 137
ISBN-13: 0309664225
DOWNLOAD EBOOKLeadership in gas turbine technologies is of continuing importance as the value of gas turbine production is projected to grow substantially by 2030 and beyond. Power generation, aviation, and the oil and gas industries rely on advanced technologies for gas turbines. Market trends including world demographics, energy security and resilience, decarbonization, and customer profiles are rapidly changing and influencing the future of these industries and gas turbine technologies. Technology trends that define the technological environment in which gas turbine research and development will take place are also changing - including inexpensive, large scale computational capabilities, highly autonomous systems, additive manufacturing, and cybersecurity. It is important to evaluate how these changes influence the gas turbine industry and how to manage these changes moving forward. Advanced Technologies for Gas Turbines identifies high-priority opportunities for improving and creating advanced technologies that can be introduced into the design and manufacture of gas turbines to enhance their performance. The goals of this report are to assess the 2030 gas turbine global landscape via analysis of global leadership, market trends, and technology trends that impact gas turbine applications, develop a prioritization process, define high-priority research goals, identify high-priority research areas and topics to achieve the specified goals, and direct future research. Findings and recommendations from this report are important in guiding research within the gas turbine industry and advancing electrical power generation, commercial and military aviation, and oil and gas production.
Author:
Publisher:
Published: 1983
Total Pages: 361
ISBN-13:
DOWNLOAD EBOOKAuthor: S. Can Gülen
Publisher: Cambridge University Press
Published: 2019-02-14
Total Pages: 735
ISBN-13: 1108416659
DOWNLOAD EBOOKEverything you wanted to know about industrial gas turbines for electric power generation in one source with hard-to-find, hands-on technical information.
Author: Ting Wang
Publisher: Woodhead Publishing
Published: 2016-11-26
Total Pages: 929
ISBN-13: 0081001851
DOWNLOAD EBOOKIntegrated Gasification Combined Cycle (IGCC) Technologies discusses this innovative power generation technology that combines modern coal gasification technology with both gas turbine and steam turbine power generation, an important emerging technology which has the potential to significantly improve the efficiencies and emissions of coal power plants. The advantages of this technology over conventional pulverized coal power plants include fuel flexibility, greater efficiencies, and very low pollutant emissions. The book reviews the current status and future developments of key technologies involved in IGCC plants and how they can be integrated to maximize efficiency and reduce the cost of electricity generation in a carbon-constrained world. The first part of this book introduces the principles of IGCC systems and the fuel types for use in IGCC systems. The second part covers syngas production within IGCC systems. The third part looks at syngas cleaning, the separation of CO2 and hydrogen enrichment, with final sections describing the gas turbine combined cycle and presenting several case studies of existing IGCC plants. - Provides an in-depth, multi-contributor overview of integrated gasification combined cycle technologies - Reviews the current status and future developments of key technologies involved in IGCC plants - Provides several case studies of existing IGCC plants around the world