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On the interaction of turbulence intensity and its scales with various diameter laser beams at high temperatures

机译:在高温下湍流强度及其鳞片的相互作用及其在高温下具有各种直径激光束的尺度

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Laser based missile defence systems (DIRCM) are being increasingly employed on aircraft. In certain circumstances the laser must pass through the exhaust plume of the aircraft engines. In order to predict the degree of divergence and dispersion of the laser beam an understanding of the exhaust gas structure and its influence is required. Specifically the effect of parameters such as temperature, carbon dioxide, turbulent intensity and turbulence scale sizes within the flow are of interest, in addition to the laser beam wavelength and beam size. A parametric study under controlled laboratory conditions was undertaken to examine these effects. The results of beam propagation through a high temperature turbulent flow at various turbulence intensity levels are presented in this paper. Beams with wavelengths 632.8 nm and 4.67 (mu)m at various beam diameters are used to study laser beam interaction with various turbulence intensity and eddy scales. The effect of the relative size of the beam diameter with respect to the turbulence scale is also reported. It was found that the beam displacement was strongly related to turbulence intensity and beam diameter. Scale lengths, path length and turbulence intensity were found to influence beam displacement. Quantifying these parametric effects at high temperatures will assist with development of a parametrically based laser beam propagation model.
机译:基于激光的导弹防御系统(DIRCM)正在越来越多地在飞机上使用。在某些情况下,激光器必须穿过飞机发动机的排气羽流。为了预测激光束的发散程度和分散,需要了解废气结构及其影响。具体地,除了激光束波长和光束尺寸之外,在流动之外,还具有感兴趣的参数诸如温度,二氧化碳,湍流强度和湍流规模尺寸的效果。进行了受控实验室条件下的参数研究,以检查这些效果。本文介绍了各种湍流强度水平下通过高温湍流流动的光束传播的结果。各种光束直径的波长632.8nm和4.67(mu)m的光束用于研究与各种湍流强度和涡尺寸的激光束相互作用。还报道了光束直径相对于湍流比例的相对尺寸的影响。发现光束位移与湍流强度和光束直径强烈相关。发现尺度长度,路径长度和湍流强度影响光束位移。在高温下量化这些参数效果将有助于开发参数化基于激光束传播模型。

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