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  • Formaat: 136 pages
  • Ilmumisaeg: 19-Mar-2020
  • Kirjastus: National Academies Press
  • Keel: eng
  • ISBN-13: 9780309664257

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Leadership 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.

Table of Contents



Front Matter Summary 1 Background 2 Aggressive Goals for Gas Turbine Development 3 High-Priority Research Areas and Topics 4 Additional Considerations Appendixes Appendix A: Statement of Task Appendix B: Compendium of High-Priority Goals, Research Areas, Research Topics, and Their Summary Statements Appendix C: Committee Member Biographical Information Appendix D: Acronyms
Summary 1(5)
1 Background
6(20)
Introduction
6(6)
Global Leadership
12(2)
Global Market Trends
14(2)
Global Technology Trends
16(3)
Prioritization Process
19(7)
2 Aggressive Goals For Gas Turbine Development
26(13)
Power Generation
26(3)
Aviation
29(4)
Oil and Gas Industry
33(3)
Goals: Interrelationships and Recommendation
36(3)
3 High-Priority Research Areas And Topics
39(62)
Research Area 1 Combustion
40(6)
Research Area 2 Structural Materials and Coatings
46(9)
Research Area 3 Additive Manufacturing for Gas Turbines
55(6)
Research Area 4 Thermal Management
61(9)
Research Area 5 High-Fidelity Integrated Simulations and Validation Experiments
70(4)
Research Area 6 Unconventional Thermodynamic Cycles
74(6)
Research Area 7 System Integration
80(5)
Research Area 8 Condition-Based Operations and Maintenance
85(5)
Research Area 9 Digital Twins and Their Supporting Infrastructure
90(3)
Research Area 10 Gas Turbines in Pipeline Applications
93(5)
Research Areas: Interrelationships and Recommendation
98(3)
4 Additional Considerations
101(10)
State of Development Achievable by 2030
101(2)
Interrelationships Among Goals, Research Areas, and Research Topics
103(4)
Research Consortia
107(1)
Development Process
107(1)
Future Vision
108(3)
APPENDIXES
A Statement of Task
111(1)
B Compendium of High-Priority Goals, Research Areas, Research Topics, and Their Summary Statements
112(6)
C Committee Member Biographical Information
118(5)
D Acronyms
123