Volcanic jets to commercial jets: synopsis and diagnosis

IF 3.6 2区 地球科学 Q1 GEOSCIENCES, MULTIDISCIPLINARY Bulletin of Volcanology Pub Date : 2024-07-10 DOI:10.1007/s00445-024-01759-z
Erkan Aydar, H. Evren Çubukçu, Çağatay Bal, Nicolas Cluzel, Çağdas Hakan Aladağ, Orkun Ersoy, Didier Laporte
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Abstract

Aircraft encounters with volcanic ash have caused significant damage over the past 40 years, resulting in particular attention being given to the issue. We analyzed the volcanic ash-aircraft encounter database published by the USGS. We added new volcanic eruptions and parameters such as eruption types, and dry–wet. Then, we applied standard and advanced statistical methods.

Over 130 encounters have been documented in the mentioned database, with volcanic ash causing severe abrasions to the windshield, airframe, wings, and engine components. In nine cases, aircraft engines failed. We applied the binary regression analysis and some laboratory melting experiments on volcanic ash. Besides phreatomagmatism, we use the term external water in this work to describe meteoric water that enters volcanic plumes through precipitation or melting ice on ice-capped volcanoes. We demonstrated that engine failure occurs when our regression analyses undergo dry-to-wet conditions. In other words, statistically, there is a positive correlation between wet ash encounters with aircraft and engine failure incidents. Moreover, experiments conducted at 900 °C and under 40 bar pressure showed increased sintering in the dry sample, while melting textures were more prevalent in hydrated samples. We concluded that despite the various eruptive dynamics of volcanic ash, the introduction of external water into the volcanic plumes, probably causing instantaneous hydration of volcanic ash, is a common factor in engine failure incidents. Thus, we have identified the reasons behind engine failures during encounters between aircraft and volcanic ash and the specific damage that can occur depending on the type of eruption involved.

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从火山喷气机到商用喷气机:概要和诊断
过去 40 年来,飞机遭遇火山灰造成了重大损失,因此这一问题受到特别关注。我们分析了美国地质调查局发布的火山灰-飞机遭遇数据库。我们添加了新的火山喷发和参数,如喷发类型和干湿度。在上述数据库中记录了 130 多起遭遇事件,火山灰对挡风玻璃、机身、机翼和发动机部件造成严重擦伤。在 9 个案例中,飞机发动机发生故障。我们对火山灰进行了二元回归分析和一些实验室熔化实验。除喷气熔融外,我们在这项工作中还使用外部水一词来描述通过降水或冰盖火山上的融冰进入火山羽流的陨石水。我们证明,当我们的回归分析经历从干到湿的条件时,发动机会发生故障。换句话说,从统计学角度看,飞机遇到湿火山灰与发动机故障事件之间存在正相关。此外,在 900 °C 和 40 bar 压力下进行的实验表明,干燥样本的烧结程度增加,而水合样本的熔融纹理更为普遍。我们的结论是,尽管火山灰的喷发动力学各不相同,但外部水进入火山羽流,可能导致火山灰瞬间水化,是发动机故障事件的一个常见因素。因此,我们确定了飞机与火山灰相遇时发动机故障的原因,以及根据所涉火山爆发类型可能造成的具体损害。
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来源期刊
Bulletin of Volcanology
Bulletin of Volcanology 地学-地球科学综合
CiteScore
6.40
自引率
20.00%
发文量
89
审稿时长
4-8 weeks
期刊介绍: Bulletin of Volcanology was founded in 1922, as Bulletin Volcanologique, and is the official journal of the International Association of Volcanology and Chemistry of the Earth’s Interior (IAVCEI). The Bulletin of Volcanology publishes papers on volcanoes, their products, their eruptive behavior, and their hazards. Papers aimed at understanding the deeper structure of volcanoes, and the evolution of magmatic systems using geochemical, petrological, and geophysical techniques are also published. Material is published in four sections: Review Articles; Research Articles; Short Scientific Communications; and a Forum that provides for discussion of controversial issues and for comment and reply on previously published Articles and Communications.
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