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[黑云母斜长片麻岩表面粗糙度对偏振度随视角变化的影响]

[Influence of surface roughness on degree of polarization of biotite plagioclase gneiss varying with viewing angle].

作者信息

Xiang Yun, Yan Lei, Zhao Yun-sheng, Gou Zhi-yang, Chen Wei

机构信息

Beijing Key Lab of Spatial Information Integration & Its Applications, Peking University, Beijing 100871, China.

出版信息

Guang Pu Xue Yu Guang Pu Fen Xi. 2011 Dec;31(12):3423-8.

Abstract

Polarized reflectance is influenced by such factors as its physical and chemical properties, the viewing geometry composed of light incident zenith, viewing zenith and viewing azimuth relative to light incidence, surface roughness and texture, surface density, detection wavelengths, polarization phase angle and so on. In the present paper, the influence of surface roughness on the degree of polarization (DOP) of biotite plagioclase gneiss varying with viewing angle was inquired and analyzed quantitatively. The polarized spectra were measured by ASD FS3 spectrometer on the goniometer located in Northeast Normal University. When the incident zenith angle was fixed at 50 degrees, it was showed that on the rock surfaces with different roughness, in the specular reflection direction, the DOP spectrum within 350-2500 nm increased to the highest value first, and then began to decline varying with viewing zenith angle from 0 degree to 80 degrees. The characterized band (520 +/- 10) nm was picked out for further analysis. The correlation analysis between the peak DOP value of zenith and surface roughness showed that they are in a power function relationship, with the regression equation: y = 0.604x(-0.297), R2 = 0.985 4. The correlation model of the angle where the peak is in and the surface roughness is y = 3.4194x + 51.584, y < 90 degrees , R2 = 0.8177. With the detecting azimuth farther away from 180 degrees azimuth where the maximum DOP exists, the DOP lowers gradually and tends to 0. In the detection azimuth 180 dgrees , the correlation analysis between the peak values of DOP on the (520 =/- 10) nm band for five rocks and their surface roughness indicates a power function, with the regression equation being y = 0.5822x(-0.333), R2 = 0.9843. F tests of the above regression models indicate that the peak value and its corresponding viewing angle correlate much with surface roughness. The study provides a theoretical base for polarization remote sensing, and impels the rock and city architecture discrimination and minerals mapping.

摘要

偏振反射率受其物理和化学性质、由光入射天顶角、观测天顶角以及相对于光入射的观测方位角组成的观测几何形状、表面粗糙度和纹理、表面密度、探测波长、偏振相位角等因素的影响。在本文中,定量探究并分析了黑云母斜长片麻岩表面粗糙度对偏振度(DOP)随观测角度变化的影响。偏振光谱由位于东北师范大学测角仪上的ASD FS3光谱仪测量。当入射天顶角固定为50度时,结果表明,在不同粗糙度的岩石表面上,在镜面反射方向上,350 - 2500 nm范围内的DOP光谱先增加到最高值,然后随着观测天顶角从0度到80度变化而开始下降。挑选出特征波段(520±10)nm进行进一步分析。天顶峰值DOP值与表面粗糙度的相关性分析表明它们呈幂函数关系,回归方程为:y = 0.604x(-0.297),R2 = 0.985 4。峰值所在角度与表面粗糙度的相关模型为y = 3.4194x + 51.584,y < 90度,R2 = 0.8177。随着探测方位远离存在最大DOP的180度方位,DOP逐渐降低并趋于0。在探测方位180度时,对五块岩石在(520±10)nm波段上的DOP峰值与其表面粗糙度进行相关性分析,表明呈幂函数关系,回归方程为y = 0.5822x(-0.333),R2 = 0.9843。上述回归模型的F检验表明,峰值及其相应的观测角度与表面粗糙度密切相关。该研究为偏振遥感提供了理论基础,并推动了岩石与城市建筑识别及矿物填图。

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