首页> 外文会议>ASME Turbo Expo: Turbomachinery Technical Conference and Exposition >AN ANALYSIS OF CIVIL AVIATION INDUSTRY SAFETY NEEDS FOR THE INTRODUCTION OF LIQUID HYDROGEN PROPULSION TECHNOLOGY
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AN ANALYSIS OF CIVIL AVIATION INDUSTRY SAFETY NEEDS FOR THE INTRODUCTION OF LIQUID HYDROGEN PROPULSION TECHNOLOGY

机译:民航行业安全需求分析液体氢推进技术

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Over the next few decades air travel is predicted to grow, with international agencies, manufacturers and governments predicting a considerable increase in aviation use. However, based on current fuel type, International Civil Aviation Organization (ICAO) project emissions from aviation are estimated to be seven to ten times higher in 2050 than in 1990. These conflicting needs are problematic and have led to the EU Flightpath 2050 targeting dramatic emissions reductions for the sector (75% CO2, 90% NOX by 2050). One proposed solution, decreasing carbon emissions without stunting the increase in air travel, is hydrogen propulsion; a technology with clear environmental benefits. However, enabling the safe application of this fuel to aviation systems and industrial infrastructure would be a significant challenge. High-profile catastrophic incidents involving hydrogen, and the flammable and cryogenic nature of liquid hydrogen (LH_2) have led to its reputation as a more dangerous substance than existing or alternative fuels. But, where they are used (in industry, transport, energy), with sufficient protocols, hydrogen can have a similar level of safety to other fuels. A knowledge of hazards, risks and the management of these becomes key to the integration of any new technology. Using assessments, and a gap analysis approach, this paper examines the civil aviation industry requirements, from a safety perspective, for the introduction of LH_2 fuel use. Specific proposed technology assessments are used to analyze incident likelihood, consequence impact, and ease of remediation for hazards in LH2 systems, and a gap analysis approach is utilized to identify if existing data is sufficient for reliable technology safety assessment. Outstanding industry needs are exposed by both examining challenges that have been identified in transport and industrial areas, and by identifying the gaps in current knowledge that are preventing credible assessment, reliable comparison to other fuels and the development of engineering systems. This paper demonstrates that while hydrogen can be a safe and environmentally friendly fuel option, a significant amount of work is required for the implementation of LH_2 technology from a mass market perspective.
机译:在接下来的几十年里,预计国际机构,制造商和政府的航空旅行预计将增长,预测航空使用的相当大增加。但是,根据当前的燃料类型,国际民用航空组织(ICAO)航空项目的排放估计在2050年比1990年更高的七到十倍。这些冲突的需求是有问题的,并导致欧盟飞行路径2050瞄准戏剧性排放扇区减少(75%CO2,90%NOx到2050)。一个提出的解决方案,降低碳排放而不会振缩空气行程的增加,是氢气推进;一种明显的环境效益的技术。然而,使这种燃料安全地应用于航空系统和工业基础设施将是一个重大挑战。高调的涉及氢和液态氢(LH_2)的易燃性和低温性质灾难性事故已导致其作为比现有的或替代燃料更为危险物质的声誉。但是,在使用它们(在工业,运输,能量)的情况下,具有足够的方案,氢气可以对其他燃料具有类似的安全水平。对危险,风险和管理的知识成为任何新技术集成的关键。本文从安全角度来看,使用评估和差距分析方法,从安全的角度来看,为引入LH_2燃料使用。具体提出的技术评估用于分析入射的可能性,后果影响,以及LH2系统中危害的疏松的疏松,并且利用间隙分析方法来确定现有数据是否足以进行可靠的技术安全评估。卓越的行业需求都有通过在运输和工业领域所确定的挑战,并通过确定现有知识中的差距,以防止可靠的评估,与其他燃料的可靠比较以及工程系统的发展。本文表明,氢气可以是安全和环保的燃料选择,从大众市场的角度来实现LH_2技术所需的大量工作。

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