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Analysis of Space Distribution of Scattered Light by Monte Carlo Method in Consideration of Atmospheric Particles

机译:考虑大气颗粒的蒙特卡罗散射光空间分布分析

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References(7) Cited-By(1) Study on the brightness of airport light systems, especially on how much light is scattered by the atmospheric particles, is important under low visibilities. In this paper, a simulation was programmed to analyze space distribution of scattered light by Monte Carlo method, based on scattering by a single particle calculated through Mie Theory. There is no limitation to the position of particles. Effects of visibility, of particle size distribution, and of light wavelength can be taken into consideration. With this program, we studied the variation of luminance distribution with the change in visibility, position of a pilot looking at the airport and the surroundings when approaching, and so forth. The result shows that the scattering of the airport light may add some influence on the brightness of the airport light in the twilight and at night. The simulation had a slight deviation from the calculation using Koschmieder formula for additional luminance with scattered daylight. Particle size distribution greatly affected airport light scattering, while it had little effect on daylight scattering.
机译:参考文献(7)By-By(1)在低能见度下,研究机场照明系统的亮度,尤其是大气颗粒散射的光量非常重要。在本文中,通过基于米氏理论计算的单个粒子的散射,通过蒙特卡罗方法对散射光的空间分布进行了程序模拟。对颗粒的位置没有限制。可以考虑可见度,粒度分布和光波长的影响。通过此程序,我们研究了亮度分布随可见度,进场时飞行员看着机场和周围环境的位置等的变化。结果表明,机场灯的散射可能会对机场灯在黄昏和夜晚的亮度增加一些影响。该模拟与使用Koschmieder公式进行的计算相比,在散射日光的情况下具有额外的亮度,因此与计算略有偏差。粒径分布极大地影响了机场光的散射,而对日光的散射影响很小。

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