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首页> 外文期刊>Journal of the IES >Prediction of Particulate Contamination on an Aperture Window
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Prediction of Particulate Contamination on an Aperture Window

机译:孔径窗口上的微粒污染的预测

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This paper presents an analysis of light scattering by surface particles on the sensor window of a missile during ascent flight. The particulate contaminant distribution on the window is calculated by tallying the number of particles in a set of size ranges. The particulate contamination at the end of the mission is predicted by adding the contributions from the events of ground and flight operations. The surface particle redistribution caused by vibroacoustic-induced surface acceleration was found to contribute the most to particulate surface contamination. The analytical surface obscuration calculation with a set of particle counts was compared with the results of the image analyzer measurement. The analytical results, which were calculated with a given function of particle shape depending on size, were more conservative than the measurement. A scattering calculation using a verified BSDF model showed that the scattering was less than 0.001 at 20 deg off the direction of the incident light in the mid IR wavelength when the surfaces were at Level 300 initially.
机译:本文对上升飞行期间导弹传感器窗口上的表面粒子的光散射进行了分析。通过计算一组尺寸范围内的颗粒数,可以计算出窗口上的颗粒污染物分布。通过添加地面和飞行操作事件的贡献,可以预测任务结束时的微粒污染。发现由振动声引起的表面加速引起的表面颗粒再分布对颗粒表面污染的贡献最大。将具有一组颗粒计数的分析表面模糊计算与图像分析仪的测量结果进行了比较。根据给定的颗粒形状函数根据尺寸计算得出的分析结果比测量结果更为保守。使用经过验证的BSDF模型进行的散射计算表明,当表面最初处于300级时,在中红外波长处入射光方向偏离20度时,散射小于0.001。

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