The top-of-atmosphere (TOA) albedo is one of the key parameters in determining the Arctic radiation budget, with continued validation of its retrieval accuracy still required. Based on three years (2007, 2015, 2016) of summertime (May⁻September) observations from the Clouds and the Earth’s Radiant Energy System (CERES) and the Multi-angle Imaging SpectroRadiometer (MISR), collocated instantaneous albedos for overcast ocean and snow/ice scenes were compared within the Arctic. For samples where both instruments classified the scene as overcast, the relative root-mean-square (RMS) difference between the sample albedos grew as the solar zenith angle (SZA) increased. The RMS differences that were purely due to differential Bidirectional Reflectance Factor (BRF) anisotropic corrections ( σ A D M ) were estimated to be less than 4% for overcast ocean and overcast snow/ice when the SZA ≤ 70°. The significant agreement between the CERES and MISR strongly increased our confidence in using the instruments overcast cloud albedos in Arctic studies. Nevertheless, there was less agreement in the cloud albedos for larger solar zenith angles, where the RMS differences of σ A D M reached 13.5% for overcast ocean scenes when the SZA > 80°. Additionally, inconsistencies between the CERES and MISR scene identifications were examined, resulting in an overall recommendation for improvements to the MISR snow/ice mask and a rework of the MISR Albedo Cloud Designation (ACD) field by incorporating known strengths of the standard MISR cloud masks.
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机译:大气层(TOA)Albedo是确定北极辐射预算的关键参数之一,仍然需要继续验证其检索准确性。基于三年(2007年,2015,2016)的夏季(May⁻september)从云层和地球的辐射能量系统(CERES)和多角度成像光谱仪(MISR),用于阴天海洋和雪的瞬间瞬间的分析/冰幕在北极区内比较。对于将场景分类为阴性的样本,样品玻璃玻璃之间的相对根均线(RMS)差异在于太阳天顶角(SZA)增加。该纯粹是由于差动双向反射因子(BRF)各向异性校正(σA d M)的RMS差估计为小于4%为阴海洋和阴雪/冰当SZA≤70°。 CERES和MISR之间的重大协议强烈增加了我们对北极研究中的仪器阴云密布云反照玻璃的信心。尽管如此,在SZA> 80°时,云反应角度较大的太阳能天顶角度较大的云反玻璃的一致性较大的矛盾达到了13.5%。此外,检查了CERES和MISR场景标识之间的不一致,从而导致改进的MISR雪/冰掩模和MISR反照率云指定(ACD)字段的返工的总体推荐通过将标准MISR云掩模的已知强度。
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