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A review of thrust-vectoring in support of a V/STOL non-moving mechanical propulsion system

机译:支持V / STOL不动机械推进系统的推力矢量综述

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The advantages associated to Vertical Short-Take-Off and Landing (V/STOL) have been demonstrated since the early days of aviation, with the initial technolology being based on airships and later on helicopters and planes. Its operational advantages are enormous, being it in the field of military, humanitarian and rescue operations, or even in general aviation. Helicopters have limits in their maximum horizontal speed and classic V/STOL airplanes have problems associated with their large weight, due to the implementation of moving elements, when based on tilting rotors or turbojet vector mechanical oriented nozzles. A new alternative is proposed within the European Union Project ACHEON (Aerial Coanda High Efficiency Orienting-jet Nozzle). The project introduces a novel scheme to orient the jet that is free of moving elements. This is based on a Coanda effect nozzle supported in two fluid streams, also incorporating boundary layer plasma actuators to achieve larger deflection angles. Herein we introduce a state-of-the-art review of the concepts that have been proposed in the framework of jet orienting propulsion systems. This review allows to demonstrate the advantages of the new concept in comparison to competing technologies in use at present day, or of competing technologies under development worldwide.
机译:自航空初期以来,就已经证明了与垂直短距起降(V / STOL)相关的优势,最初的技术以飞艇为基础,后来又以直升机和飞机为基础。在军事,人道主义和救援行动领域,甚至在通用航空领域,它的运行优势都是巨大的。当基于倾斜旋翼或涡轮喷气矢量机械定向喷嘴时,由于采用了运动元件,直升机的最大水平速度受到限制,而经典的V / STOL飞机由于重量大而存在问题。在欧盟ACHEON项目(空中柯恩达高效定向喷嘴)中提出了一种新的替代方案。该项目引入了一种新颖的方案来定向没有运动元素的射流。这是基于在两个流体流中支撑的柯恩达效应喷嘴,还结合了边界层等离子体致动器以实现更大的偏转角。本文中,我们介绍了在射流定向推进系统框架中提出的概念的最新技术。与当前使用的竞争技术或全球正在开发的竞争技术相比,这篇综述可以证明新概念的优势。

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