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首页> 外文期刊>International journal of structural integrity >Design of a smart leading edge device for low speed wind tunnel tests in the European project SADE
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Design of a smart leading edge device for low speed wind tunnel tests in the European project SADE

机译:欧洲项目SADE中用于低速风洞测试的智能前沿设备的设计

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摘要

Purpose - The purpose of this paper is to describe the pre-design and sizing of a smart leading edge section which is developed in the project SADE (Smart High Lift Devices for Next Generation-Wings), which is part of the seventh framework program of the EU. Design/methodology/approach - The development of morphing technologies in SADE concentrates on the leading and trailing edge high-lift devices. At the leading edge a smart gap and step-less droop nose device is developed. For the landing flap a smart trailing edge of the flap is in the focus of the research activities. The main path in SADE follows the development of the leading edge section and the subsequent wind tunnel testing of a five meter span full-scale section with a chord length of three meters in the wind tunnel T-101 at the Russian central aero-hydrodynamic institute (TsAGI) in Moscow. Findings - The presented paper gives an overview over the desired performance and requirements of a smart leading edge device, its aerodynamic design for the wind tunnel tests and the structural pre-design and sizing of the full-scale leading edge section which will be tested in the wind tunnel. Originality/value - SADE aims at a major step forward in the development and evaluation of the potential of morphing airframe technologies.
机译:目的-本文的目的是描述在SADE(下一代机翼的智能高举设备)项目中开发的智能前沿部分的预设计和尺寸确定,该项目是该项目第七框架计划的一部分欧盟。设计/方法/方法-SADE中变形技术的开发集中于前沿和后沿的高起重设备。在最前沿开发了一种智能的间隙和无级下垂鼻装置。对于着陆襟翼,襟翼的智能后缘是研究活动的重点。 SADE的主要道路是在俄罗斯中央空气流体力学研究所T-101的风洞T-101上开发前沿部分并随后进行风洞测试,弦宽为5米,弦长为3米。 (TsAGI)在莫斯科。结果-本文介绍了智能前缘设备的理想性能和要求,风洞测试的空气动力学设计以及将在以下位置进行测试的全尺寸前缘部分的结构预设计和尺寸概述。风洞。原创性/价值-SADE致力于在发展和评估机身变形技术潜力方面迈出一大步。

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