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首页> 外文期刊>Applied optics >APPLICABILITY OF REGULAR PARTICLE SHAPES IN LIGHT SCATTERING CALCULATIONS FOR ATMOSPHERIC ICE PARTICLES
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APPLICABILITY OF REGULAR PARTICLE SHAPES IN LIGHT SCATTERING CALCULATIONS FOR ATMOSPHERIC ICE PARTICLES

机译:规则粒子形状在大气冰粒光散射计算中的适用性

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摘要

We ascertain the usefulness of simple ice particle geometries for modeling the intensity distribution of light scattering by atmospheric ice particles. To this end, similarities and differences in light scattering by axis-equivalent, regular and distorted hexagonal cylindric, ellipsoidal, and circular cylindric ice particles are reported. All the results pertain to particles with sizes much larger than a wavelength and are based on a geometrical optics approximation. At a nonabsorbing wavelength of 0.55 mu m, ellipsoids (circular cylinders) have a much (slightly) larger asymmetry parameter g than regular hexagonal cylinders. However, our computations show that only random distortion of the crystal shape leads to a closer agreement with g values as small as 0.7 as derived from some remote-sensing data analysis. This may suggest that scattering by regular particle shapes is not necessarily representative of real atmospheric ice crystals at nonabsorbing wavelengths. On the other hand, if real ice particles happen to be hexagonal, they may be approximated by circular cylinders at absorbing wavelengths. (C) 1996 Optical Society of America [References: 22]
机译:我们确定了简单的冰粒几何形状对于模拟大气冰粒散射光的强度分布的有用性。为此,报道了通过轴当量,规则和扭曲的六边形圆柱,椭圆形和圆形圆柱冰粒在光散射方面的相似性和差异。所有结果均与尺寸远大于波长的粒子有关,并且均基于几何光学近似。在0.55μm的非吸收波长下,椭球(圆柱体)的不对称参数g比常规六边形圆柱体大(略)大。但是,我们的计算表明,只有晶体形状的随机畸变才能导致g值(从某些遥感数据分析得出的值小至0.7)之间的一致性更高。这可能表明,规则颗粒形状的散射并不一定代表非吸收波长下的实际大气冰晶。另一方面,如果真实的冰粒恰好是六边形,则可以用圆柱体在吸收波长处近似它们。 (C)1996年美国眼镜学会[参考文献:22]

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