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Numerical laser beam propagation using large eddy simulation of a jet engine flow field

机译:使用大型涡流模拟对喷气发动机流场进行数值激光束传播

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In certain directed infrared countermeasure (DIRCM) situations, the laser beam path may have to pass close to the engine exhaust plume of the aircraft and models of plume turbulence are needed for DIRCM performance simulations. The jet engine plume was modeled using large eddy simulation (LES), providing time resolved information about the large scale turbulent eddies. The refractive index data from the LES calculations were integrated along the propagation path to produce time resolved phase screens for optical beam propagation. The phase screens were used to calculate laser beam parameters including beam wander and power-in-bucket (PIB). Numerical beam propagation resulted in a root-mean-square beam wander of 200 µrad for the small turbojet engine studied. The PIB was calculated for beams with 80μrad and 2 mrad divergence having equal beam diameter when passing through the plume. For the beam with low divergence, the average PIB was reduced from 0.23 to 0.040, while the beam with wider divergence showed no significant reduction. In both cases, the plume introduced significant temporal variation of the instantaneous PIB. The beam wander is not affected by the diverqence, but only depends on beam size.
机译:在某些定向红外对策(DIRCM)的情况下,激光束路径可能必须靠近飞机的发动机排气羽流通过,并且DIRCM性能仿真需要羽流湍流模型。使用大型涡流仿真(LES)对喷气发动机羽流建模,以提供有关大型湍流涡旋的时间分辨信息。沿传播路径对LES计算所得的折射率数据进行积分,以生成用于光束传播的时间分辨相位屏。相位屏蔽用于计算激光束参数,包括光束漂移和桶内功率(PIB)。数值射束传播导致所研究的小型涡轮喷气发动机的均方根射束漂移为200 µrad。计算具有80μrad和2 mrad散度的光束通过烟羽时具有相同的光束直径的PIB。对于低发散度的光束,平均PIB从0.23降低到0.040,而具有较大发散度的光束则没有明显降低。在这两种情况下,羽流都会引起瞬时PIB的明显时间变化。光束的漂移不受分集的影响,而仅取决于光束的大小。

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