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1)  aerosol scattering
气悬散射
2)  Air suspended matter backscatter
气悬体后向散射
3)  aerosol single scattering
气悬体单散射
4)  atmospheric scattering
大气散射
1.
Based on atmospheric scattering theory,color science,atmospheric environmental monitoring and urban air quality daily reports and other related principles,the negative correlation between air bule saturation and urban air quality level was proved with the theoretical analysis and empirical research.
以大气散射理论为基础,结合颜色学、大气环境监测及城市空气质量日报等相关原理,从理论分析与实证研究2个方面证实了天空蓝色饱和程度与城市空气质量等级之间存在着显著的负相关性,即:天空蓝色饱和程度越低,空气污染等级越高,空气质量状况越差;天空蓝色饱和程度越高,空气污染等级较低,空气质量状况越好;通过相关及回归分析与检验,制得“城市空气质量等级目测色卡”,适用于晴朗天气肉眼观察天空颜色,进而目测估计空气质量等级状况,以采取必要防护措施。
2.
According to the transmission model,atmospheric transmission attenuation,atmospheric scattering attenuation and inverse ration of square distance attenuation are the three main factors leading to the power attenuation with the distance increase.
模型表明:大气传输中的两次斜向传输引入的大气透射比衰减,大气散射衰减和距离平方反比衰减是导致接收光功率随距离增加迅速衰减的主要因素。
3.
It is necessary to detect the atmospheric scattering laser in some situation.
得到激光大气散射辐照度随离轴距离的增大近似按反比规律缓慢下降、能见度仅影响散射强度的大小而不影响散射强度的分布等特征。
5)  bubble scattering
气泡散射
1.
The compress of the large dynamic range for the bubble scattering signal is solved and the change of the scattering volume with scattering angles in the receiver s field of view is discussed.
分析了气泡散射的信号特征,并提出了气泡散射信号的功率谱密度处理法。
2.
The average value and the absolute deviation respectively are centered in the threshold detection and noise elimination method to estimate the bubble scattering intensity,and the DC component could not be isolated by them.
阈值检测法和降噪处理法分别以平均值和绝对偏差为中心来估计气泡散射强度,它们不能隔离直流分量。
6)  atmosphere scattering
大气散射
1.
The model shows that the effect on the atmosphere scattering is space variant.
在单散射近似下,建立了微光图像对比度计算模型,从模型可知,大气散射对图像对比度的影响是空变的,该模型为微光图像处理提供了新的思路。
2.
The total outgoing radiance at top-of-atmosphere over the ocean contributes mostly from the atmosphere scattering.
55μm波段大气散射辐射的空间分布与0。
补充资料:前向相干散射原子光谱分析
分子式:
CAS号:

性质:利用光波的前向相干散散射效应进行多元素分析的光谱技术。原理为光散射具有相长干涉和共振性。前者为前向散射光强度比侧向的高;后者为光频率接近于原子共振频率时,散射增强,而且散射光强度与散射原子数目有关。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条