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Boeing's Variable Geometry Chevron: morphing aerospace structures for jet noise reduction

机译:波音公司的可变几何人字形:变形航空航天结构以降低喷射噪声

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Boeing is applying cutting edge smart material actuators to the next generation morphing technologies for aircraft. This effort has led to the Variable Geometry Chevrons (VGC), which utilize compact, light weight, and robust shape memory alloy (SMA) actuators. These actuators morph the shape of chevrons on the trailing edge of a jet engine in order to optimize acoustic and performance objectives at multiple flight conditions. We have demonstrated a technical readiness level of 7 by successfully flight testing the VGCs on a Boeing 777-300ER with GE-115B engines. In this paper we describe the VGC design, development and performance during flight test. Autonomous operation of the VGCs, which did not require a control system or aircraft power, was demonstrated. A parametric study was conducted showing the influence of VGC configurations on shockcell generated cabin noise reduction during cruise. The VGC system provided a robust test vehicle to explore chevron configurations for community and shockcell noise reduction. Most importantly, the VGC concept demonstrated an exciting capability to optimize jet nozzle performance at multiple flight conditions.
机译:波音公司正在将尖端的智能材料执行器应用于飞机的下一代变形技术。这种努力导致了可变几何人字形(VGC),它利用了紧凑,轻巧和坚固的形状记忆合金(SMA)致动器。这些致动器使喷气发动机后缘上的人字形形状变形,以优化多种飞行条件下的声学和性能指标。通过在带有GE-115B发动机的波音777-300ER上成功对VGC进行飞行测试,我们证明了7级的技术准备水平。在本文中,我们描述了飞行测试期间的VGC设计,开发和性能。演示了不需要控制系统或飞机动力的VGC的自主运行。进行了一项参数研究,显示了VGC配置对巡航期间冲击波产生的机舱降噪的影响。 VGC系统提供了一种强大的测试工具,可用于研究人字形配置以降低社区和减震器的噪音。最重要的是,VGC概念展示了令人兴奋的能力,可以在多种飞行条件下优化喷嘴性能。

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