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Volcanic ash melting under conditions relevant to ash turbine interactions

机译:与灰轮机相互作用有关的条件下的火山灰融化

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摘要

The ingestion of volcanic ash by jet engines is widely recognized as a potentially fatal hazard for aircraft operation. The high temperatures (1,200–2,000 °C) typical of jet engines exacerbate the impact of ash by provoking its melting and sticking to turbine parts. Estimation of this potential hazard is complicated by the fact that chemical composition, which affects the temperature at which volcanic ash becomes liquid, can vary widely amongst volcanoes. Here, based on experiments, we parameterize ash behaviour and develop a model to predict melting and sticking conditions for its global compositional range. The results of our experiments confirm that the common use of sand or dust proxy is wholly inadequate for the prediction of the behaviour of volcanic ash, leading to overestimates of sticking temperature and thus severe underestimates of the thermal hazard. Our model can be used to assess the deposition probability of volcanic ash in jet engines.
机译:喷气发动机摄入火山灰被广泛认为是飞机运行的潜在致命危险。喷气发动机的典型高温(1200–2000°C)会加剧灰分的熔化并粘附在涡轮机部件上,从而加剧灰分的影响。由于火山的化学成分会影响火山灰变成液体的温度,因此,对这种潜在危害的估算变得很复杂。在此,根据实验,我们对灰分行为进行参数化,并开发一个模型来预测其整体组成范围的熔化和黏附条件。我们的实验结果证实,使用沙粒或粉尘替代品通常不足以预测火山灰的行为,从而导致高估了粘结温度,从而严重低估了热危害。我们的模型可用于评估喷气发动机中火山灰的沉积概率。

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