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Estimating Infrared Radiometric Satellite Sea Surface Temperature Retrieval Cold Biases in the Tropics due to Unscreened Optically Thin Cirrus Clouds

机译:由于未经过筛选的光学薄卷云估计红外辐射卫星海表温度反演热带地区的冷偏差

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摘要

Passive longwave infrared radiometric satellite–based retrievals of sea surface temperature (SST) at instrument nadir are investigated for cold bias caused by unscreened optically thin cirrus (OTC) clouds [cloud optical depth (COD) ≤ 0.3]. Level 2 nonlinear SST (NLSST) retrievals over tropical oceans (30°S–30°N) from Moderate Resolution Imaging Spectroradiometer (MODIS) radiances collected aboard the NASA Aqua satellite (Aqua-MODIS) are collocated with cloud profiles from the Cloud–Aerosol Lidar with Orthogonal Polarization (CALIOP) instrument. OTC clouds are present in approximately 25% of tropical quality-assured (QA) Aqua-MODIS Level 2 data, representing over 99% of all contaminating cirrus found. Cold-biased NLSST (MODIS, AVHRR, and VIIRS) and triple-window (AVHRR and VIIRS only) SST retrievals are modeled based on operational algorithms using radiative transfer model simulations conducted with a hypothetical 1.5-km-thick OTC cloud placed incrementally from 10.0 to 18.0 km above mean sea level for cloud optical depths between 0.0 and 0.3. Corresponding cold bias estimates for each sensor are estimated using relative Aqua-MODIS cloud contamination frequencies as a function of cloud-top height and COD (assuming they are consistent across each platform) integrated within each corresponding modeled cold bias matrix. NLSST relative OTC cold biases, for any single observation, range from 0.33° to 0.55°C for the three sensors, with an absolute (bulk mean) bias between 0.09° and 0.14°C. Triple-window retrievals are more resilient, ranging from 0.08° to 0.14°C relative and from 0.02° to 0.04°C absolute. Cold biases are constant across the Pacific and Indian Oceans. Absolute bias is lower over the Atlantic but relative bias is higher, indicating that this issue persists globally.
机译:基于无源长波红外辐射卫星的仪器最低点海面温度(SST)反演,研究了由未屏蔽的光学薄卷云(OTC)云[云光学深度(COD)≤0.3]引起的冷偏差。利用NASA Aqua卫星(Aqua-MODIS)上收集的中等分辨率成像光谱仪(MODIS)辐射在热带海洋(30°S–30°N)上进行的2级非线性SST(NLSST)检索与来自Cloud-Aerosol的云剖面合并具有正交极化(CALIOP)仪器的激光雷达。 OTC云存在于大约25%的热带质量保证(QA)Aqua-MODIS 2级数据中,占发现的所有污染卷云的99%以上。冷辐射NLSST(MODIS,AVHRR和VIIRS)和三窗口(仅AVHRR和VIIRS)SST检索是基于操作算法的模型,使用辐射传输模型模拟,并假设虚拟1.5公里厚的OTC云从10.0开始逐步放置云光学深度在0.0到0.3之间的区域,比平均海平面高18.0 km。使用相对的Aqua-MODIS云污染频率作为集成在每个相应的建模冷偏差矩阵中的云顶高度和COD(假设它们在每个平台上都是一致的)的函数,估算每个传感器的相应冷偏差估计值。对于任何单个观察,对于三个传感器,NLSST相对OTC的冷偏差在0.33°至0.55°C的范围内,绝对(总体平均值)偏差在0.09°至0.14°C之间。三窗口检索更具弹性,相对温度范围为0.08°至0.14°C,绝对温度范围为0.02°至0.04°C。在太平洋和印度洋,冷偏见是恒定的。大西洋上的绝对偏差较低,但相对偏差较高,表明该问题在全球仍然存在。

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