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Assessments of FY-3A Microwave Humidity Sounder measurements using NOAA-18 Microwave Humidity Sounder

机译:使用NOAA-18微波测湿仪对FY-3A微波测湿仪进行评估

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摘要

The measurements from FY-3 MicroWave Humidity Sounder (MWHS) are compared with the data from NOAA-18 Microwave Humidity Sounder (MHS) under various atmospheric and surface conditions. A quality control (QC) procedure is applied to allow the comparison be conducted separately for outliers and nonoutliers. The QC algorithm includes a gross error check, instrument noise spikes through noise equivalent differential temperature, and an O-B biweighting check, where O represents satellite observations and B is model-simulated brightness temperature by Radiative Transfer for TIROS-N Operational Vertical Sounder based on the 6 h forecast fields of the National Centers for Environmental Prediction (NCEP) Global Forecast System (GFS). It is found that (1) the global bias and standard deviation of O-B from MWHS brightness temperatures are comparable in magnitudes to those of MHS measurements, (2) positive O-B outliers prevail in channel 3 for both MWHS and MHS instruments, and (3) biases of channels 4 and 5 are predominantly negative over land for both MWHS and MHS. A series of sensitivity experiments are carried out to demonstrate that the large positive O-B biases could be due to the errors in the atmospheric water vapor profiles from the model forecast fields being too wet, and that the negative biases over land arise mostly from errors in surface emissivity, but smooth model terrain also contributes to negative biases over land.
机译:在不同的大气和地面条件下,将FY-3微波湿度探测器(MWHS)的测量结果与NOAA-18微波湿度探测器(MHS)的数据进行了比较。应用质量控制(QC)程序以允许对异常值和非异常值分别进行比较。 QC算法包括总误差检查,通过噪声等效温差的仪器噪声尖峰和OB双加权检查,其中O表示卫星观测,B是通过辐射传递基于TIROS-N垂直操作测深仪的模型模拟亮度温度。国家环境预测中心(NCEP)全球预报系统(GFS)的6小时预报区域。发现(1)OB与MWHS亮度温度之间的整体偏差和标准偏差在数量级上与MHS测量的可比性;(2)MWHS和MHS仪器的通道3中普遍存在正OB异常值;(3)对于MWHS和MHS,通道4和5的偏差在陆地上主要为负。进行了一系列敏感性实验,证明较大的正OB偏差可能是由于模型预报场中太湿的大气水汽剖面误差所致,而陆地上的负偏差主要是由地表误差引起的发射率,但平滑的模型地形也会对土地产生负面影响。

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