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Impact of hydrogen fueled hypersonic airliners on the O_3 layer depletion

机译:氢燃料超音速客机对O_3层耗竭的影响

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The promising opportunity to reach intercontinental long distances in a few hours is a remarkable issue for both private companies and public organizations: teams of scientists, technicians and researchers in Europe, USA, China, Russia and India are working at national and international programs on long range high speed civil transport. The Space X's CEO also announced, at the IAC 2017 conference, the growing interest in developing a 30-min transatlantic passenger flight by means of a 2-stage rocket-based vehicle. Meeting the dwell requirement of antipodal ranges and high speeds is realistic through a new era of hydrogen-fuelled hypersonic airbreathing vehicles. The interest in hydrogen as aviation fuel has recently increased not only due to the growth of worldwide air travel and time reduction requirements, also for the dramatic rise of common aviation fuel prices, and the continuously increasing restrictive environmental issues.In the light of these changes that have occurred in fuel prices, emissions reduction imperatives and the currently higher demand for supersonic airline travels, hydrogen-fuelled hypersonic airbreathing airliners are a valuable chance with respect to other means of transport (i.e., a rocked based passenger transport). In fact, hydrogen is one of the most environmental friendly fuels, since no particulate and carbon oxide emissions are produced. Past objections on hydrogen as fuel for civil transport, such as safety, liquefying and storing hydrogen are now overcame and its technological maturity opens a large worldwide market for hydrogen as "green" fuel. However, since the opportunity for hydrogen as fuel for future fleets of airline transport resides in its "green" peculiarity, the investigation of the impact of the H-2/air hot exhausts on the ozone layer depletion is mandatory. In fact, a lot of hypersonic cruise vehicles fly at an altitude of 25000-30000 m that corresponds to the ozonosphere. In this region, the concentration of ozone is maximum and NOx emissions may catalyse the ozone destruction.In this context, the goal of this paper is to estimate the effect of the H-2/air emissions (i.e., nitrogen oxides, hydroxide and water vapor) of a fleet of 200 hydrogen fuelled hypersonic airliners flying once a day for 360 days from Brussels to Sydney, on the ozone layer and on the global temperature increase. (C)2018 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:对于私营公司和公共组织而言,在几小时内到达洲际长距离的潜在机会都是一个重大问题:欧洲,美国,中国,俄罗斯和印度的科学家,技术人员和研究人员团队正在长期开展国家和国际计划范围高速民用运输。 Space X的首席执行官还在IAC 2017大会上宣布,人们越来越有兴趣通过两级火箭飞行器开发30分钟的跨大西洋客机。通过氢燃料超音速呼吸飞行器的新时代,满足对极范围和高速的居住要求是现实的。近年来,人们对氢作为航空燃料的兴趣有所增加,这不仅是由于全球航空旅行和减少时间要求的增长,还因为普通航空燃料价格的急剧上涨以及限制性环境问题的不断增加。在燃油价格,减排的紧迫性和当前对超音速飞机旅行的更高需求中发生的氢燃料超音速呼吸机是其他运输方式(如摇摆的客运)的宝贵机会。实际上,氢是最环保的燃料之一,因为不会产生颗粒物和二氧化碳排放。现在已经克服了过去关于氢作为民用运输燃料的反对意见,例如安全性,液化和储存氢,其技术成熟度为氢作为“绿色”燃料打开了广阔的全球市场。但是,由于氢作为未来航空运输机队燃料的机会在于其“绿色”特性,因此必须对H-2 /空气热排气对臭氧层消耗的影响进行调查。实际上,许多高超音速巡航飞行器在相当于臭氧层的25000-30000 m高度飞行。在该区域,臭氧浓度最大,NOx排放可能会促进臭氧破坏。在此背景下,本文的目的是评估H-2 /空气排放(即氮氧化物,氢氧化物和水)的影响。一支由200辆氢燃料超音速客机组成的机队,每天从布鲁塞尔飞往悉尼,在臭氧层和全球气温上升的情况下,进行360天的飞行。 (C)2018氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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