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Observed HIRS and MODIS High-Cloud Frequencies in the 2000s

机译:观察到2000年代的HIR和MODIS高云频率

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This paper compares the cloud parameter data records derived from High Resolution Infrared Radiation Sounder (HIRS) and Moderate Resolution Imaging Spectroradiometer (MODIS) measurements from the years 2003 through 2013. Cloud-top pressure (CTP) and effective emissivity (epsilon f; cloud emissivity multiplied by cloud fraction) are derived using the 15-mu m spectral bands in the CO2 absorption band and implementing the CO2-slicing technique; the approach is robust for high semitransparent clouds but weak for low clouds with little thermal contrast from clear-sky radiances. The high-cloud (HiCld; with CTP less than 440 hPa) seasonal cycles of HIRS and MODIS observations are found to be in sync, but the HIRS frequency of detection is about 10% higher than that of MODIS (which is attributed to a lower threshold for cloud detection in the HIRS CO2 bands). Differences are largest during nighttime and at the beginning of the time series (2003-06). Both show Northern Hemisphere (NH) and Southern Hemisphere (SH) seasonal HiClds are out of phase and both agree within 2% on NH-SH HiCld differences. During the summer, maximum HiCld frequency averages 5% more in the NH.
机译:本文将云参数数据记录与来自2003年至2013年来的高分辨率红外辐射发声器(HIRS)和适度分辨率成像光谱仪(MODIS)测量的云参数数据记录进行比较。云顶压(CTP)和有效的发射率(epsilon f;云发射率通过CO 2吸收带中的15-MU M频谱带和实现CO2切片技术来推导云分数)乘以云分数。这种方法对于高半透明云具有鲁棒,但低云弱,与透明天空无线的热对比。高云(HICLD; CTP小于440 HPA)的HIR和MODIS观察的季节性周期是同步的,但检测频率比MODIS的频率高约10%(归因于较低的HIRS CO2带中云检测的阈值)。夜间期间和时间序列的开头是最大的差异(2003-06)。展示北半球(NH)和南半球(SH)季节性HICLDS不相阶段,既同意NH-SH HICLD差异的2%。在夏季,NH的最高HICLD频率平均为5%。

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