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Use of Equipment Health Monitoring information for assessing potential exposure to volcanic events.

机译:使用设备健康监测信息评估火山事件的潜在暴露。

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The eruption of Eyjafjallajokull, early 2010, led to major disruption to UK and European airspace with the grounding of many aircraft. The main concern being the harmful effects of volcanic ash deposits on engine components and other aircraft systems. Advice from engine and airframe OEMs is to avoid visible ash. However, there will be times when ash is not visible, or an area of ash is inadvertently entered. Although the UK meteorological office provided estimates of geographic location and density, for given time periods, no existing mechanism was available to reliably establish likely exposure to ash particles. This paper provides an overview of techniques developed at that time to fuse standard equipment health monitoring (EHM) data, routinely collected at the end of each flight, with meteorological information, generated by external agencies, for the purpose of identifying potential exposure to ash particles. Hence, having an EHM system that may be able to identify potential exposure will mitigate risk of undetected engine damage. The paper also contains a brief explanation of volcanic ash and its effect on gas turbine engines as well as a review of recent volcanic activity and corresponding eruption magnitudes.
机译:2010年初Eyjafjallajokull爆发导致英国和欧洲领空的主要破坏,以许多飞机接地。主要关切是火山灰沉积对发动机部件和其他飞机系统的有害影响。发动机和机身OEM的建议是避免可见灰。但是,有时候灰烬不可见,或者无意中进入灰烬区域。虽然英国气象办公室提供了地理位置和密度的估计,但对于给定的时间段,没有现有的机制可用于可靠地建立对灰分颗粒的可能暴露。本文概述了当时开发的技术,以熔断标准设备健康监测(EHM)数据,在每次飞行结束时常规收集,内外机构产生的气象信息,以识别灰分颗粒的潜在暴露。因此,具有可以识别潜在曝光的EHM系统将减轻未检测到的发动机损坏的风险。本文还载有对火山灰及其对燃气轮机发动机的影响的简要说明,以及近期火山活性和相应的喷发量大。

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