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Laser beam propagation in jet engine plume environments - a review

机译:喷气发动机羽毛环境中的激光束传播 - 评论

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Laser beam propagation through adverse turbulent environments such as the region close to a jet engine exhaust need to be studied in order to predict performance degradations on airborne laser systems. The turbulent plume region may introduce severe perturbations which accumulate and cause beam degradation in terms of beam wander, intensity scintillations and beam broadening at longer ranges. Applications of interest with respect to laser beam propagation in jet engine plume environments include e.g. directed infrared countermeasures (DIRCM) and active imaging. By characterising and evaluating the perturbation effects schemes for compensation or avoiding performance degradation can be devised. The turbulence effects in the plume region occur by mixing of hot exhaust flow from the jet engine with surrounding ambient air causing spatial and temporal fluctuations in the refractive index. In comparison to atmospheric turbulence considerably shorter outer- and inner scales have been observed. Typical values of the structure constant within the plume region range from 10~(-10) to 10~(-9) m~(-2/3) making the turbulence several order in magnitude stronger in contrast to propagation through the atmosphere. Of importance in characterisation of the jet engine plume with respect to laser beam propagation are turbulent length scales, the extent of the turbid region, variation of the structure constant and temporal flow properties. In this paper reported experimental results and modelling approaches aimed for predicting laser beam propagation degradation in jet engine plume regions are reviewed. The results will be discussed in perspective of system performance.
机译:通过不良湍流环境诸如靠近喷射发动机排气的区域的激光束传播,以便预测空气传播激光系统上的性能降低。湍流的羽流区域可以引入严重的扰动,其在梁漂泊,强度闪烁和梁在更长的范围内展开束劣化的严重扰动。利息对喷射发动机羽流环境中的激光束传播的应用包括例如:定向红外对策(DIRCM)和主动成像。通过表征和评估扰动效果,可以设计用于补偿或避免性能下降的方案。羽流区域中的湍流效应通过从喷射发动机的热排气流混合而具有周围的环境空气,导致折射率中的空间和时间波动。与大气湍流相比,观察到的外部和内尺度相当短。羽流区域内的结构恒定的典型值范围为10〜( - 10)至10〜(-9)m〜(-2/3),使湍流与通过气氛的传播相比,幅度较强。关于喷射发动机羽流相对于激光束传播的表征的重要性是湍流长度,浑浊区域的程度,结构恒定和时间流动性的变化。本文报道了旨在预测喷射发动机羽流区域中的用于预测激光束传播劣化的实验结果和建模方法。结果将以系统性能的角度讨论。

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