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预测和减轻飞行甲板上的故障:飞机发动机鸟撞场景。

Predicting and mitigating failures on the flight deck: an aircraft engine bird strike scenario.

机构信息

University of Southampton, Southampton, UK.

Solent University, Southampton, UK.

出版信息

Ergonomics. 2022 Dec;65(12):1672-1695. doi: 10.1080/00140139.2022.2048897. Epub 2022 Mar 16.

Abstract

Engine damage as a consequence of foreign object debris (FOD) during flight is frequently caused by birds. One approach to minimising disruption caused by this damage is to provide flight crew with accurate information relating to the continuing operational status of the aircraft's engines. Before designing such avionic systems however, understanding of current procedures is needed. Hierarchical Task Analysis (HTA) and Systematic Human Error Reduction and Prediction Approach (SHERPA) were used to identify potential failures that flight crew may make when managing an engine bird strike. Workshops with commercial pilots generated insights into current practice and a commercial pilot SME reviewed outputs for accuracy. Over 200 potential failures were identified, most commonly related to communication. Remedial measures, considering future avionic systems, are proposed to mitigate identified failures. This analysis provides a starting point for future design concepts for assisting flight crew in dealing with engine malfunction due to FOD strikes. Hierarchical Task Analysis was conducted to show all tasks involved in dealing with an in-flight aircraft engine bird strike. Systematic Human Error Reduction and Prediction Approach analysis was performed and over 200 possible failures were identified when managing this event. Remedial measures are proposed to help mitigate possible failures.

摘要

发动机损坏是飞行中异物碎片(FOD)造成的,鸟类是造成这种损坏的常见原因。为了最大限度地减少这种损坏造成的干扰,可以为机组人员提供与飞机发动机持续运行状态相关的准确信息。然而,在设计此类航空电子系统之前,需要了解当前的程序。层次任务分析(HTA)和系统人为错误减少和预测方法(SHERPA)用于确定机组人员在管理发动机鸟击时可能出现的潜在故障。与商业飞行员进行的研讨会深入了解了当前的做法,一位商业飞行员 SME 对准确性进行了审查。确定了 200 多个潜在故障,最常见的是与沟通有关。考虑到未来的航空电子系统,提出了补救措施来减轻已确定的故障。该分析为未来的设计概念提供了一个起点,以帮助机组人员应对因 FOD 撞击导致的发动机故障。进行了层次任务分析,以显示处理飞行中飞机发动机鸟击所涉及的所有任务。进行了系统人为错误减少和预测方法分析,在管理此事件时确定了 200 多个可能的故障。提出了补救措施以帮助减轻可能出现的故障。

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