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Characterization of downwelling radiance measured from a ground-based microwave radiometer using numerical weather prediction model data

机译:使用数字天气预报模型数据对基于地面的微波辐射计测得的下降流辐射特征进行表征

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The ground-based microwave sounding radiometers installed at nine weather stations of Korea Meteorological Administration alongside with the wind profilers have been operating for more than 4?years. Here we apply a process to assess the characteristics of the observation data by comparing the measured brightness temperature (iT/isubb/sub) with reference data. For the current study, the reference data are prepared by the radiative transfer simulation with the temperature and humidity profiles from the numerical weather prediction model instead of the conventional radiosonde data. Based on the 3 years of data, from 2010 to 2012, we were able to characterize the effects of the absolute calibration on the quality of the measured iT/isubb/sub. We also showed that when clouds are present the comparison with the model has a high variability due to presence of cloud liquid water therefore making cloudy data not suitable for assessment of the radiometer's performance. Finally we showed that differences between modeled and measured brightness temperatures are unlikely due to a shift in the selection of the center frequency but more likely due to spectroscopy issues in the wings of the 60?GHz absorption band. With a proper consideration of data affected by these two effects, it is shown that there is an excellent agreement between the measured and simulated iT/isubb/sub. The regression coefficients are better than 0.97 along with the bias value of better than 1.0?K except for the 52.28?GHz channel which shows a rather large bias and variability of ?2.6 and 1.8?K, respectively.
机译:安装在大韩民国气象厅9个气象站的地面微波测深辐射计以及风廓线仪已经运行了4年以上。在这里,我们通过将测得的亮度温度( T b )与参考数据进行比较,来评估观测数据的特征。对于当前的研究,参考辐射是通过辐射传递模拟来准备的,其中具有数值天气预报模型中的温度和湿度剖面,而不是传统的探空仪数据。基于2010年至2012年这3年的数据,我们能够表征绝对校准对被测 T b 的质量的影响。我们还表明,当存在云时,由于存在云液态水,与模型的比较具有很大的可变性,因此使云数据不适用于评估辐射计的性能。最终,我们表明,由于中心频率选择的变化,模拟亮度温度与实测亮度温度之间的差异不太可能,但更可能是由于60?GHz吸收带的机翼中的光谱问题。适当考虑受这两种影响影响的数据,结果表明,所测得的和模拟的 T b 之间有着极好的一致性。除了52.28?GHz信道分别具有相当大的偏差和2.6和1.8?K的可变性外,回归系数均优于0.97且偏置值也优于1.0?K。

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