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Laser beam propagation through a full scale aircraft turboprop engine exhaust

机译:激光束通过全尺寸飞机涡轮螺旋桨发动机废气的传播

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The exhaust from engines introduces zones of extreme turbulence levels in local environments around aircraft. This may disturb the performance of aircraft mounted optical and laser systems. The turbulence distortion will be especially devastating for optical missile warning and laser based DIRCM systems used to protect manoeuvring aircraft against missile attacks, situations where the optical propagation path may come close to the engine exhaust. To study the extent of the turbulence zones caused by the engine exhaust and the strength of the effects on optical propagation through these zones a joint trial between Germany, the Netherlands, Sweden and the United Kingdom was performed using a medium sized military turboprop transport aircraft tethered to the ground at an airfield. This follows on earlier trials performed on a down-scaled jet-engine test rig.rnLaser beams were propagated along the axis of the aircraft at different distances relative to the engine exhaust and the spatial beam profiles and intensity scintillations were recorded with cameras and photodiodes. A second laser beam path was directed from underneath the loading ramp diagonally past one of the engines. The laser wavelengths used were 1.5 and 3.6 μm. In addition to spatial beam profile distortions temporal effects were investigated. Measurements were performed at different propeller speeds and at different distances from exhaust nozzle to the laser path.rnSignificant increases in laser beam wander and long term beam radius were observed with the engine running. Corresponding increases were also registered in the scintillation index and the temporal fluctuations of the instantaneous power collected by the detector.
机译:发动机的废气在飞机周围的局部环境中引入了极度湍流的区域。这可能会干扰飞机上安装的光学和激光系统的性能。对于光学导弹预警和基于激光的DIRCM系统,湍流畸变将尤其具有破坏性,该系统用于保护机动飞机免受导弹袭击,其中光学传播路径可能靠近发动机排气口。为了研究由发动机排气引起的湍流区域的范围以及通过这些区域对光传播的影响的强度,德国,荷兰,瑞典和英国之间的联合试验是使用系留在空中的中型军用涡轮螺旋桨飞机进行的在机场的地面上。这是在缩小规模的喷气发动机试验台上进行的较早试验之后的结果。激光束沿飞机的轴以相对于发动机排气的不同距离传播,并通过照相机和光电二极管记录了空间束轮廓和强度闪烁。从装载坡道的下方引导第二条激光束路径,斜向经过一台发动机。所使用的激光波长是1.5和3.6μm。除了空间光束轮廓失真之外,还研究了时间效应。在不同的螺旋桨速度和从排气喷嘴到激光路径的不同距离处进行测量。在发动机运转时,观察到激光束漂移和长期光束半径显着增加。闪烁指数和检测器收集的瞬时功率的时间波动也记录了相应的增加。

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