考虑排放模型影响的航空旅行SAF排放案例研究

IF 3.8 Q2 TRANSPORTATION Transportation Research Interdisciplinary Perspectives Pub Date : 2025-01-01 Epub Date: 2025-01-25 DOI:10.1016/j.trip.2025.101341
Hakkı Aksoy , María García Domene , Parthiban Loganathan , Simon Blakey , Elias Zea , Ricardo Vinuesa , Evelyn Otero
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引用次数: 0

摘要

主要由化石燃料消耗驱动的航空旅行对环境的影响仍然是一个关键的争论话题。应对这一挑战需要立即采取可持续的做法,以减轻其对环境的影响。虽然氢燃料和混合动力推进技术在未来前景广阔,但目前的工作重点是可持续航空燃料(SAF),作为一种可行的短期解决方案,以减少航空排放,同时确保与现有航空基础设施的兼容性。本文研究了航空旅行对环境的影响,重点是与传统燃料和SAF相关的排放。采用亚音速燃料流法(SF2)和改进版的排放校正亚音速燃料流法(EC-SF2)两种方法,分析了从斯德哥尔摩到波尔多的飞行轨迹上的非二氧化碳排放趋势。两种方法的比较凸显了精确的排放建模的重要性,特别是对排放指数的SAF校正。SF2方法表明,与传统燃料相比,热值更高的SAF燃料增加了总HC和CO排放,同时减少了NOx排放。相反,EC-SF2方法的减排趋势更为均匀。我们提出的方法基于SAF特定数据修正燃油流量和排放指数,因此可以为SAF的排放行为提供更可靠的估计。这些发现突出了排放模型对环境评估的敏感性。
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Case study on SAF emissions from air travel considering emissions modeling impact
The environmental impact of air travel, largely driven by fossil-fuel consumption, remains a critical subject of debate. Addressing this challenge requires immediately adopting sustainable practices to mitigate its environmental footprint. While hydrogen and hybrid-electric propulsion technologies show promise for the future, current efforts focus on Sustainable Aviation Fuels (SAF) as a viable near-term solution to reduce aviation emissions while ensuring compatibility with existing aviation infrastructure. This paper examines the environmental impact of air travel, focusing on the emissions associated with conventional fuel and SAF. Using two methodologies, namely the subsonic fuel flow method (SF2) and an improved version of it, the emissions corrected subsonic fuel flow method (EC-SF2), non-CO2 emissions trends are analyzed along a flight trajectory from Stockholm to Bordeaux. The comparison between the two methods underscores the importance of accurate emission modeling, particularly for SAF correction on emission index. The SF2 method reveals that SAF fuels with higher calorific value than conventional fuel increased total HC and CO emissions while decreasing NOx emissions. Conversely, the EC-SF2 method resulted in a more homogeneous emissions reduction trend. Our proposed methodology, which corrects both fuel flow and emission index based on SAF-specific data, could, therefore, offer a more reliable estimation of emissions behavior for SAF. These findings highlight the sensitivity of emissions modeling on environmental assessment.
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来源期刊
Transportation Research Interdisciplinary Perspectives
Transportation Research Interdisciplinary Perspectives Engineering-Automotive Engineering
CiteScore
12.90
自引率
0.00%
发文量
185
审稿时长
22 weeks
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