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一种从中红外和热红外数据中反演地表比辐射率的物理算法 被引量:13
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作者 李召良 f.petitcolin 张仁华 《中国科学(E辑)》 CSCD 2000年第z1期18-26,共9页
根据两通道与温度无关的波谱指数的概念,并利用白天和晚上中红外和热红外的空间测量值,提出了一种用于提取方向比辐射率的物理方法,同时提出了一个用于描述反射率(或比辐射率)角度变化的三参数现像模型.把这种方法用于AVHRR... 根据两通道与温度无关的波谱指数的概念,并利用白天和晚上中红外和热红外的空间测量值,提出了一种用于提取方向比辐射率的物理方法,同时提出了一个用于描述反射率(或比辐射率)角度变化的三参数现像模型.把这种方法用于AVHRR数据,结果显示,地球表面并不是Lambert体.对裸露土壤,双向反射率的角度变化似乎与方位角无关,而植被具有很强的后向散射作用.至于方向比辐射率,植被的值很高而且与方向无关,相反,干旱地区的地表比辐射率的值较低并且具有显著的方向性. 展开更多
关键词 地表比辐射率 双向反射率 与温度无关的波谱指数
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A physically based algorithm for land surface emissivity retrieval from combined mid-infrared and thermal infrared data 被引量:6
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作者 李召良 张仁华 f.petitcolin 《Science China(Technological Sciences)》 SCIE EI CAS 2000年第S1期23-33,共11页
On the basis of the concept of the two-channel Temperature-Independent Spectral Indices (TISI), a physically based method is developed to extract the directional emissivities in mid-infrared and thermal infrared chann... On the basis of the concept of the two-channel Temperature-Independent Spectral Indices (TISI), a physically based method is developed to extract the directional emissivities in mid-infrared and thermal infrared channels from day-night space measurements. A phenomenol-ogical model with three parameters is also proposed in this paper to describe the angular variations of the reflectivity (or emissivity). Having applied the proposed method to AVHRR data on an area covering the Iberian Peninsula (rather vegetated) and on a region centered on Tunisia (arid area), one can see from the results that the terrestrial surfaces do not behave as Lambertian reflector and angular variations of bidirectional reflectivity for bare soils appear to be azimuth-independent whereas those for vegetation present a pronounced backscattering effect. As for directional emissivities, values of vegetated areas are found to be higher and remain rather constant whatever the view angle is. On the contrary, on arid areas, values are found to be rather low and present significant angular variations. 展开更多
关键词 LAND surface EMISSIVITY BIDIRECTIONAL REFLECTIVITY TISI.
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