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Hot gas ingestion testing of an advanced STOVL concept in the NASA Lewis 9- by 15-foot low speed wind tunnel with flow visualization

机译:带有流动可视化功能的NASA Lewis 9-×15英尺低速风洞中先进STOVL概念的热气吸入测试

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摘要

Advanced Short Takeoff/Vertical Landing (STOVL) aircraft capable of operating from remote sites, damaged runways, and small air capable ships are being pursued for deployment around the turn of the century. To achieve this goal, it is important that the technologies critical to this unique class of aircraft be developed. Recognizing this need, NASA Lewis Research Center, McDonnell Douglas Aircraft, and DARPA defined a cooperative program for testing in the NASA Lewis 9- by 15-Foot Low Speed Wind Tunnel (LSWT) to establish a database for hot gas ingestion, one of the technologies critical to STOVL. Results from a test program are presented along with a discussion of the facility modifications allowing this type of testing at model scale. These modifications to the tunnel include a novel ground plane, an elaborate model support which included 4 degrees of freedom, heated high pressure air for nozzle flow, a suction system exhaust for inlet flow, and tunnel sidewall modifications. Several flow visualization techniques were employed including water mist in the nozzle flows and tufts on the ground plane. Headwind (free-stream) velocity was varied from 8 to 23 knots.
机译:正在寻求能够在偏远地区,受损跑道和小型空中舰艇上运行的高级短距起飞/垂直着陆(STOVL)飞机,以在本世纪初左右进行部署。为了实现这一目标,重要的是要开发对这种独特飞机类型至关重要的技术。认识到这一需求,NASA刘易斯研究中心,麦克唐纳道格拉斯飞机公司和DARPA制定了一项合作计划,用于在NASA Lewis 9乘15英尺低速风洞(LSWT)中进行测试,以建立热气摄入数据库,其中一个是对STOVL至关重要的技术。给出了测试程序的结果,并讨论了允许在模型规模上进行此类测试的设施修改。对隧道的这些修改包括:新颖的地平面,精心设计的模型支撑(包括4个自由度),加热的高压空气(用于喷嘴流),吸气系统排气(用于入口流)以及隧道侧壁修改。使用了几种流量可视化技术,包括喷嘴流中的水雾和地面上的簇。逆风(自由流)速度从8到23节不等。

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