超声速客机计划再次登上历史舞台

Sean O'Neill

工程(英文) ›› 2022, Vol. 10 ›› Issue (3) : 1-3.

PDF(984 KB)
PDF(984 KB)
工程(英文) ›› 2022, Vol. 10 ›› Issue (3) : 1-3. DOI: 10.1016/j.eng.2022.01.004
新闻热点

超声速客机计划再次登上历史舞台

作者信息 +

Supersonic Travel Seeks an Encore

Author information +
History +

引用本文

导出引用
Sean O'Neill. 超声速客机计划再次登上历史舞台. Engineering. 2022, 10(3): 1-3 https://doi.org/10.1016/j.eng.2022.01.004

参考文献

[1]
United adding supersonic speeds with new agreement to buy aircraft from Boom Supersonic [Internet]. Chicago: United Airlines; 2021 Jun 3 [cited 2021 Nov 17]. Available from: https://www.united.com/en/us/newsroom/ announcements/2021-06-03-united-adding-supersonic-speeds-with-newagreement-to-buy-aircraft-from-boom-supersonic-2653216403.
[2]
Celebrating Concorde [Internet]. London: British Airways; [cited 2021 Nov 17]. Available from: https://www.britishairways.com/en-gb/information/aboutba/history-and-heritage/celebrating-concorde.
[3]
Warwick G. Spike takes a different path to supersonic renaissance [Internet]. New York City: Aviation Week Network. 2021 Mar 17 [cited 2021 Nov 17]. Available from: https://aviationweek.com/aerospace/spike-takes-differentpath-supersonic-renaissance.
[4]
Singh S. Exclusive: inside Exosonic’s supersonic air force one ambitions [Internet]. London: Simple Flying; 2021 Apr 16 [cited 2021 Nov 17]. Available from: https://simpleflying.com/exosonic-supersonic-air-force-one-2/.
[5]
Finlay M. Japan expects to develop supersonic planes by 2030 [Internet]. London: Simple Flying; 2021 Jun 16 [cited 2021 Nov 17]. Available from: https://simpleflying.com/jaxa-supersonic-planes.
[6]
Kluger J. Boom XB-1 supersonic demonstrator: the 100 Best Inventions of 2021 [Internet]. New York City: Time; 2021 Nov 10 [cited 2021 Nov 17]. Available from: https://time.com/collection/best-inventions-2021/6112684/xb-1- boom-supersonic/.
[7]
Whitaker B. Startups and NASA working to return passenger supersonic flights to the sky [Internet]. New York City: CBS News; 2021 Nov 21 [cited 2021 Nov 24. Available from: https://www.cbsnews.com/news/supersonic-commercialair-travel-60-minutes-2021-11-21/.
[8]
Reed D. The collapse of Aerion Supersonic shows that aviation advances must be as affordable as they are amazing [Internet]. Jersey City: Forbes; 2021 Jun 2 [cited 2021 Nov 17]. Available from: https://www.forbes.com/sites/ danielreed/2021/06/02/the-collapse-of-aerion-supersonic-shows-that-aviationadvances-must-be-as-affordable-as-they-are-amazing.
[9]
Cook J. Supersonic jet maker Aerion folds as Concorde dream fails to take off [Internet]. Redmond: MSN; 2021 May 24 [cited 2021 Nov 17]. Available from: https://www.msn.com/en-gb/money/other/supersonic-jet-maker-aerion-foldsas-concorde-dream-fails-to-take-off.
[10]
Wong E. For Concorde, economics trumped technology. New York City: The New York Times; 2003 Oct 24 [cited 2021 Nov 17]. Available from: https:// www.nytimes.com/2003/10/24/nyregion/for-concorde-economics-trumpedtechnology.html.
[11]
Supersonic flight [Internet]. Washington, DC: Federal Aviation Administration; 2020 Nov 25 [cited 2021 Nov 17]. Available from: https://www.faa.gov/ newsroom/supersonic-flight?newsId=22754.
[12]
Banke J. Aeronautical artwork, computer simulation, or both? [Internet]. Washington, DC: National Aeronautics and Space Administration; 2020 Dec 1 [cited 2021 Nov 20]. Available from: https://www.nasa.gov/aeroresearch/ aeronautical-artwork-computer-simulation-or-both.
[13]
Sun Y, Smith H. Low-boom low-drag solutions through the evaluation of different supersonic business jet concepts. Aeronaut J 2020;124:76–95.
[14]
Low-boom flight demonstration overview [Internet]. Washington, DC: National Aeronautics and Space Administration; 2021 Nov 18 [cited 2021 Nov 20]. Available from: https://www.nasa.gov/mission_pages/lowboom/overview.
[15]
X-59 QueSST [Internet]. Washington, DC: National Aeronautics and Space Administration; [cited 2021 Nov 20]. Available from: https://www.nasa.gov/ specials/X59/.
[16]
The X-59—Challenges of making an X-plane [Internet]. Stamford: Key.Aero; 2020 Sep 6 [cited 2021 Nov 17]. Available from: https://www.key.aero/article/ x-59-challenges-making-x-plane.
[17]
Low-boom flight demonstration—The Mission [Internet]. Washington DC: National Aeronautics and Space Administration; 2021 Nov 18 [cited 2021 Nov 20]. Available from: https://www.nasa.gov/mission_pages/lowboom/ mission.
[18]
‘‘The leading edge: innovation in U.S. aerospace”—Subcommittee Hearing [Internet]. Washington, DC: The House Committee on Transportation and Infrastructure, US Congress; 2021 Apr 27 [cited 2021 Nov 17]. Available from: https://transportation.house.gov/committee-activity/hearings/the-leading-edgeinnovation-in-us-aerospace.
[19]
Kharina A, MacDonald T, Rutherford D. Environmental performance of emerging supersonic transport aircraft [Internet]. Washington, DC: International Council on Clean Transportation; 2018 July 17 [cited 2021 Nov 17]. Available from: https://theicct.org/publications/environmentalperformance-emerging-commercial-supersonic-aircraft.
[20]
Developing Sustainable Aviation Fuel (SAF) [Internet]. Montreal: International Air Transport Association [cited 2021 Nov 17]. Available from: https://www. iata.org/en/programs/environment/sustainable-aviation-fuels/.
[21]
] Renewables 2020: key trends to watch. Paris: International Energy Agency; 2020 [cited 2021 Nov 17]. Available from: https://www.iea.org/reports/ renewables-2020/key-trends-to-watch.
[22]
Speth RL, Eastham SD, Fritz TM, Sanz-Morére I, Agarwal A, Prashanth P, et al. Global environmental impact of supersonic cruise aircraft in the stratosphere. Washington, DC: National Aeronautics and Space Administration; 2021 Feb 2 [cited 2021 Nov 17]. Available from: https://ntrs.nasa.gov/citations/20205009400.
PDF(984 KB)

Accesses

Citation

Detail

段落导航
相关文章

/