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Crashworthiness and ditching behaviour of blended-wing-body (BWB) aircraft design

机译:混合机翼(BWB)飞机设计的耐撞性和排水性能

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摘要

Over the last few decades, the fuel efficiency of aircrafts was mainly improved by the application of refined aerodynamics, new materials, structural optimization and enhanced engine performance. A further potential for a greener aircraft is seen in the unconventional blended-wing-body (BWB) design configuration due to its advanced aerodynamic design and its reduced weight. For the certification of novel aircraft configurations, the airworthiness authorities require proof of at least equivalent safety standards compared to the existing conventional transport aircraft. In this context, the BWB configuration has to demonstrate sufficient crashworthiness for emergency landing on rigid surface and on water. Since structural modifications for improved safety should be applied in the early conceptual design phase of an aircraft, explicit simulations have been performed with the objective to estimate the crash behaviour of the BWB configuration. Based on the simulation results, design principles are derived for improved crashworthiness and ditching behaviour for the BWB aircraft configuration.
机译:在过去的几十年中,飞机的燃油效率主要通过应用改进的空气动力学,新材料,结构优化和增强的发动机性能而得到改善。由于其先进的空气动力学设计和减轻的重量,在非常规的混合机翼机身(BWB)设计配置中还可以看到更环保的飞机的潜力。为了对新型飞机配置进行认证,适航当局要求证明与现有常规运输飞机相比至少具有同等的安全标准。在这种情况下,BWB配置必须证明具有足够的耐撞性,以便紧急降落在刚性表面和水上。由于应该在飞机的早期概念设计阶段进行结构改进以提高安全性,因此已经进行了明确的仿真,目的是估计BWB构造的坠毁行为。根据仿真结果,得出了设计原理,以提高BWB飞机配置的耐撞性和开沟性能。

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