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A New Approach to Improved Rotorcraft Safety

机译:一种提高旋翼飞机安全性的新方法

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A New Approach to Improved Rotorcraft Safety Abstract for 40th European Rotorcraft Forum -Airworthiness Data in every corner of the world indicates that "pilot error" (pilot judgment & actions, safety culture/management, etc.) is by far the leading contributor to fatal rotorcraft accidents (EHEST Analysis of 2000-2005 European Helicopter Accidents - 2010). As such, notable safety efforts have aimed at producing better pilots through training and organisational culture. This is a completely rational and sensible approach; perhaps, in addition, there are technologies that can come into play that can effectively reduce pilot error and that could provide greater safety benefit if they were more attainable. Often these candidate technologies are ruled out early in the process because the airworthiness codes are not written in a manner that is conducive to the introduction of new technology. Cautiousness and conservatism in the initial airworthiness codes is not a new condition but there might be another way. Over the last decade, the global small aeroplane community has been traveling a bold new path to dramatically improve safety, while simultaneously reducing the cost and effort required to certify new products and retrofittable technologies. The differences between the rotorcraft world and the fixed wing world are great but there is a powerful example of how attainable technology can save lives in the aeroplane world. As with rotorcraft, controlled flight into terrain (CFIT) was the second highest cause of fatal accidents over the last decade. This is where the similarity ends however. When looking at the U.S. fatal, fixed wing accident rate for CFIT accidents one sees a dramatic reduction - one which is not linked to any new regulation.
机译:第四十届欧洲旋翼飞机论坛上改进旋翼飞机安全性的新方法-适航性数据在世界各个角落表明,“飞行员错误”(飞行员的判断和行动,安全文化/管理等)到目前为止是致命事故的主要原因旋翼飞机事故(2000年至2005年欧洲直升机事故的EHEST分析-2010年)。因此,安全方面的显着努力旨在通过培训和组织文化来培养更好的飞行员。这是一种完全理性和明智的做法;也许,此外,还有一些可以发挥作用的技术,可以有效地减少飞行员的失误,并且如果可以实现的话,可以提供更大的安全性。这些候选技术通常在流程的早期就被排除在外,因为适航代码的编写方式不利于引入新技术。最初的适航规则中的谨慎和保守态度并不是一个新条件,但可能还有另一种方式。在过去的十年中,全球小型飞机界一直在走一条大胆的新道路,以大幅度提高安全性,同时降低认证新产品和可改装技术所需的成本和工作量。旋翼飞机世界和固定翼世界之间的差异是巨大的,但是有一个强有力的例子表明,可获得的技术如何挽救飞机世界的生命。与旋翼飞机一样,过去十年来,受控飞行进入地形(CFIT)是造成致命事故的第二大原因。但是,这就是相似性结束的地方。当查看CFIT事故的美国致命,固定机翼事故发生率时,人们会发现急剧下降的趋势-与任何新法规都没有关系。

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