首页> 外文会议>Geoscience and Remote Sensing Symposium, 1999. IGARSS '99 Proceedings. IEEE 1999 International >A global multi-year biophysical land surface data set from NOAA AVHRR data
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A global multi-year biophysical land surface data set from NOAA AVHRR data

机译:来自NOAA AVHRR数据的全球多年生物物理陆表数据集

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A global, monthly, 1 by 1 degree biophysical land surface data set for 1982-1990 is derived from data collected by the Advanced Very High Resolution Radiometer (AVHRR) on board the NOAA-7, -9, and -11 satellites. The AVHRR data are adjusted for sensor degradation, volcanic aerosol effects, cloud contamination, short term atmospheric effects (>=2 months), solar zenith angle variations, and missing data. Biophysical parameters such as leaf area index (LAI), fraction of photosynthetically active radiation absorbed by vegetation (FPAR), and albedo are estimated. Evaluation shows that the interannual variation in the data is significantly improved by the adjustments. Algorithms to derive biophysical parameters are tested with data from intensive remote sensing experiments (FIFE, OTTER, BOREAS, HAPEX Sahel). Albedo estimates from this study show general agreement with albedo estimates from the Earth Radiation Budget Experiment (ERBE), but also indicate a need for improved soil reflectance estimates. The multi-year land surface datasets presented in this study are a unique compilation of spatially and temporarily consistent biophysical parameters to study spatial, seasonal, and interannual variation in vegetation and interactions with the atmosphere, the hydrological cycle, the energy balance, and biogeochemical cycles. The biophysical data will be distributed by the Goddard Distributed Active Archive Center (DAAC) [URL: http//daac.gsfc.nasa.gov/] as a precursor to the International Satellite Land Surface Climatology Project (ISLSCP) Initiative II during the first half of 1999.
机译:1982-1990年全球每月1度生物物理陆地表面数据集来自NOAA-7,-9和-11卫星上的超高分辨率高分辨率辐射计(AVHRR)收集的数据。针对传感器降级,火山气溶胶效应,云污染,短期大气效应(> = 2个月),太阳天顶角变化和缺失数据对AVHRR数据进行了调整。估计生物物理参数,例如叶面积指数(LAI),植被吸收的光合有效辐射的比例(FPAR)和反照率。评估表明,通过调整,数据的年际变化得到了显着改善。使用来自密集遥感实验(FIFE,OTTER,BOREAS,HAPEX Sahel)的数据测试了导出生物物理参数的算法。这项研究的反照率估算值与“地球辐射预算实验”(ERBE)的反照率估算值基本一致,但也表明需要改进土壤反射率估算值。这项研究中提供的多年陆地表面数据集是空间和暂时一致的生物物理参数的唯一汇编,用于研究植被的空间,季节和年际变化以及与大气,水文循环,能量平衡和生物地球化学循环的相互作用。生物物理数据将由戈达德分布式主动档案中心(DAAC)[URL:http // daac.gsfc.nasa.gov /]分发,作为第一阶段国际卫星地面气候学计划(ISLSCP)的先驱。 1999年上半年。

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