Warner J X, Gille J C, Edwards D P, Ziskin D C, Smith M W, Bailey P L, Rokke L
Appl Opt. 2001 Mar 10;40(8):1269-84. doi: 10.1364/ao.40.001269.
The Measurements of Pollution in the Troposphere (MOPITT) instrument, which was launched aboard the Earth Observing System (EOS) Terra spacecraft on 18 December 1999, is designed to measure tropospheric CO and CH(4) by use of a nadir-viewing geometry. The measurements are taken at 4.7 mum in the thermal emission and absorption for the CO mixing ratio profile retrieval and at 2.3 and 2.2 mum in the reflected solar region for the total CO column amount and CH(4) column amount retrieval, respectively. To achieve the required measurement accuracy, it is critical to identify and remove cloud contamination in the radiometric signals. We describe an algorithm to detect cloudy pixels, to reconstruct clear column radiance for pixels with partial cloud covers, and to estimate equivalent cloud top height for overcast conditions to allow CO profile retrievals above clouds. The MOPITT channel radiances, as well as the first-guess calculations, are simulated with a fast forward model with input atmospheric profiles from ancillary data sets. The precision of the retrieved CO profiles and total column amounts in cloudy atmospheres is within the expected ?10% range. Validations of the cloud-detecting thresholds with the moderate-resolution imaging spectroradiometer airborne simulator data and MOPITT airborne test radiometer measurements were performed. The validation results showed that the MOPITT cloud detection thresholds work well for scenes covered with more than 5-10% cloud cover if the uncertainties in the model input profiles are less than 2 K for temperature, 10% for water vapor, and 5% for CO and CH(4).
对流层污染测量仪(MOPITT)于1999年12月18日搭载在地球观测系统(EOS)的Terra卫星上发射升空,其设计目的是通过使用天底观测几何结构来测量对流层中的一氧化碳(CO)和甲烷(CH₄)。在热发射和吸收波段,于4.7微米处进行测量以反演CO混合比廓线;在反射太阳辐射区域,分别于2.3微米和2.2微米处进行测量以反演CO柱总量和CH₄柱总量。为达到所需的测量精度,识别并去除辐射信号中的云污染至关重要。我们描述了一种算法,用于检测有云像素、重建部分云覆盖像素的晴空柱辐射率,以及估算阴天条件下的等效云顶高度,以便在云层上方进行CO廓线反演。利用快速辐射传输模型,结合辅助数据集的输入大气廓线,对MOPITT通道辐射率以及初猜计算进行模拟。在有云大气中反演得到的CO廓线和柱总量的精度在预期的±10%范围内。利用中分辨率成像光谱仪机载模拟器数据和MOPITT机载测试辐射计测量结果,对云检测阈值进行了验证。验证结果表明,如果模型输入廓线中的温度不确定性小于2K、水汽不确定性小于10%、CO和CH₄不确定性小于5%,则MOPITT云检测阈值对于云覆盖超过5%-10%的场景效果良好。