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61.
基于卫星遥感影像的南昌市城市热岛效应研究   总被引:2,自引:0,他引:2  
分析了城市热岛效应研究的关键技术,采用了地表发射率对亮度温度进行订正的方法,尽可能地消除地表覆盖等对地表温度反演的影响,利用1989和2000年的LandsatTM/ETM+数据,实现了南昌市城区及其周边区域的城市热岛效应的评价。  相似文献   
62.
热红外遥感的温度与发射率分离研究进展   总被引:1,自引:0,他引:1  
热红外传感器测得的辐射亮度值是温度和发射率的函数,因此,对于热红外遥感反演地表温度,温度和发射率的分离是一个关键问题。总结了地表温度反演所取得的进展,综述了温度与反射率分离的几种主要方法,对比分析了各种方法的优缺点。最后,对地表温度反演的发展趋势进行了展望。  相似文献   
63.
劈窗算法是目前由热红外遥感图像数据获取陆面温度最主要的方法。由于进行地面像元尺度实时陆面温度同步测量的困难,尚无法直接对现有各劈窗算法进行评判。该文借助于辐射传输模型LOWTRAN7及其提供的6 种标准大气模式,进行模拟计算,分析了6 种主要劈窗算法对大气廓线误差和比辐射率的敏感度,作为对劈窗算法适用性的一间接判据。  相似文献   
64.
塔克拉玛干沙漠地表发射率及分布变化特征   总被引:1,自引:0,他引:1  
通过利用便携式傅立叶变换热红外光谱仪,对冷热黑体辐射和漫反射金板辐射校正,测量波长在8–14 μm的热红外大气窗口的地表辐射光谱,计算出地表的发射率光谱,再转换成地表的发射率值(ε)。为获得塔克拉玛干沙漠精确的ε,沿着沙漠公路,从南至北穿越沙漠,平均每50 km进行一次测量,获得了沙漠地表发射率的分布变化特征。结果表明:靠近绿洲的地表发射率值最高,达到0.93,绿洲与沙漠过渡带的值为0.91–0.92,沙漠其它地区的值为0.90–0.91,而沙漠中心区接近0.89。  相似文献   
65.
吴莹  翁富忠 《气象学报》2014,72(4):749-759
首先运用先进微波扫描辐射仪(AMSR-E)资料反演了北非沙漠地区晴空条件下的地表微波发射率。然后根据不同的土壤类型,进一步分析了沙漠地表微波发射率频谱特性,并将增加土壤质地信息前、后的翁(Weng)氏微波地表发射率模型(2001)的模拟结果和反演结果进行了比较。结果表明,沙漠地表发射率与土壤质地密切相关,随土壤颗粒大小的不同变化明显。在沙漠土壤类型中,以大颗粒为主的土壤类型,其水平(垂直)极化的发射率通常随频率提高而增大(减小);而对于以较小粒子为主的沙漠土壤类型,地表发射率几乎为常数,或水平(垂直)极化的发射率随频率提高略有减小(增大)。并且,发射率的季节性特征明显,特别是以小颗粒组成的土壤,其水平极化的发射率比垂直极化的发射率表现出更强的季节性变化。以上这些发射率特征与翁氏模型模拟结果一致。此外,在翁氏模型的输入参数中增加土壤质地信息(土壤组分含量、粒径尺度)改善了翁氏模型在沙漠地区的模拟结果,特别是对于包含大量小粒子的沙漠土壤类型,如黏土和黏质壤土,模拟误差从6%9%降低至4%以下。由于翁氏模型是美国国家环境预报中心(NCEP)全球同化和预报系统的重要组成部分,对翁氏模型的改进将提高沙漠地区卫星资料的利用率并有望改进数值天气预报的准确度。  相似文献   
66.
The angular effects of emissivity are ignored in current land surface temperature (LST) products. As a result, the directionality of these LST products limits their further application in many fields. Accurate correction of the angular problem of LST products requires explicit understanding of the angular effects of emissivity at the pixel scale. Currently, nearly ten years of global emissivity products of MODIS are available. However, the pixel-scale directionality of emissivity has never been analyzed. By performing a statistical analysis of 5-year MODIS emissivity products over most of East Asia, we generated the empirical relationships between the directional emissivity, land cover, and seasonal variations. Two look-up tables (LUTs) of directional emissivity were created for typical land cover types and applied to the generalized split-window algorithm to modify the MODIS LST. The results showed that the angular effect of emissivity could introduce a significant bias of −1-3 K to the 1 km resolution LST. Finally, the spatial scale effects of emissivity were analyzed, and it was found that the temperature differences caused by scale effects fell within +/−0.5 K for most pixels if 5 km emissivity was used in 1 km LST retrieval. Therefore, wide use of the LUTs can be expected.  相似文献   
67.
本文基于菲涅尔反射公式,结合现有的偏振反射模型对单叶与植被多角度偏振测量结果与理论结合进行分析;通过研究发现,偏振反射在前向散射方向可以通过菲涅尔反射公式进行解释,但是,在后向散射方向则需要考虑其他物理机理。此外,传感器获取的植被偏振信息既可以作为一种"噪声"来剔除,剔除后在可见光波段将相对误差从原来的30%降低到20%以内,又可以作为额外有效的信息源表征植被的结构特征:通过模型参数的大小判断冠层形态的平整程度。本文可以作为植被偏振探测的系统化方法,并且给出植被固有的偏振反射效应规律,即植被越平展光滑,产生的偏振信息越多;同时也将偏振光遥感在植被监测中的有效性凸显出来,即偏振信息的剥离有助于提升双向反射模型的计算精度。  相似文献   
68.
High spatial resolution land surface broadband emissivity (BBE) is not only useful for surface energy balance studies at local scales, but also can bridge the gap between existing coarser resolution BBE products and point-based field measurements. This study proposes a disaggregation approach that utilizes the established BBE–reflectance relationship for estimating high spatial resolution BBE for bare soils from Landsat surface reflectance data. The disaggregated BBE is compared to the BBE calculated from spatial–temporal matched Advanced Spaceborne Thermal Emission and Reflectance Radiometer emissivity product. Comparison results show that better agreement is achieved over relative homogeneous areas, but deteriorated over heterogeneous and cloud-contaminated areas. In addition, field-measured emissivity data over large homogeneous desert were also used to validate the disaggregated BBE, and the bias is 0.005. The comparison and validation results indicated that the disaggregation approach can obtain high spatial resolution BBE with better accuracy for homogeneous area.  相似文献   
69.
The land surface broadband emissivity (LSBE) is a key parameter for estimating surface radiation, and there have been many studies of the LSBE at global or local scales. However, few studies have validated the surface emissivity database with multi-point field measurement data using infrared radiometry, especially in China. In this study, we focus on the validation of the emissivity product of the global land surface satellite (GLASS) LSBE database for northern China for the period from 2006 to 2011. Specifically, we have employed an eight-day averaged, gridded emissivity product in the 8–13.5 µm spectral range produced at a spatial resolution of 1000 m from the Moderate Resolution Imaging Spectrometer albedo product using a new algorithm. The GLASS LSBE database was validated over bare surfaces with field measurement data from sand samples collected at many pseudo-invariant sand dune sites located in western and northwestern China. By comparing measured emissivity for different land surface types at different sites and different times, it was shown that the results were consistent and that the accuracy of the field measurements was reliable. The results of the validation of GLASS LSBE with these field emissivity data showed very good agreement.  相似文献   
70.
Polarized macromolecular compounds in typical lacustrine and marine shale oils collected from the Ordos Basin and Tarim Basin of China were analyzed by FT-ICR-MS. Maturity was taken into consideration by diagenesis physical simulation experiments on shale oils, which had been collected at various temperature and pressure stages. The results showed that similar components existed in non-hydrocarbon and asphaltenes and the main peak compound classes of Nl and 02 were potential parameters for identifying typical marine oil and lacustrine oil in China. Nitrogen compounds/(nitrogen compounds and oxygen compounds), such as Nl/(O2+Nt), NL/(Oa+Nt), Ni/(NiO1+N1O2) are the maturity indicators, which are related with C-N and C-O bond energy. Differences in molecular components and weights between marine and lacustrine oils are the effective index to identify source maturity and sedimentary environment.  相似文献   
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