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首页> 外文期刊>Atmospheric Measurement Techniques Discussions >Uncertainties of ground-based microwave radiometer retrievals in zenith and off-zenith observations under snow conditions
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Uncertainties of ground-based microwave radiometer retrievals in zenith and off-zenith observations under snow conditions

机译:在雪地条件下,Zenith和脱象观测的地面微波辐射计检索的不确定性

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This paper is to investigate the uncertainties of microwave radiometer (MWR) retrievals in snow conditions and also explore the discrepancies of MWR retrievals in zenith and off-zenith observations. The MWR retrievals were averaged in a ±15?min period centered at sounding times of 00:00 and 12:00?UTC and compared with radiosonde observations (RAOBs). In general, the MWR retrievals have a better correlation with RAOB profiles in off-zenith observations than in zenith observations, and the biases (MWR observations minus RAOBs) and root mean square errors (RMSEs) between MWR and RAOB are also clearly reduced in off-zenith observations. The biases of temperature, relative humidity, and vapor density decrease from 4.6?K, 9?%, and 1.43?g?m?3 in zenith observations to ?0.6?K, ?2?%, and 0.10?g?m?3 in off-zenith observations, respectively. The discrepancies between MWR retrievals and RAOB profiles by altitude present the same situation. Cases studies show that the impact of snow on accuracies of MWR retrievals is more serious in heavy snowfall than in light snowfall, but off-zenith observation can mitigate the impact of snowfall. The MWR measurements become less accurate in snowfall mainly due to the retrieval algorithm, which does not consider the effect of snow, and the accumulated snow on the top of the radome increases the signal noise of MWR measurements. As the snowfall drops away by gravity on the sides of the radome, the off-zenith observations are more representative of the atmospheric conditions for RAOBs.
机译:本文研究了微波辐射计(MWR)检索在雪地条件下的不确定性,并探讨了天顶和偏离天顶观察中MWR检索的差异。 MWR检索在±15Ω·分钟的时间内平均在00:00和12:00的声音时期为中心,与无线电探测器观察(Raobs)进行比较。通常,MWR检索与在天顶观察中的raob型材比在天顶观察中具有更好的相关性,并且MWR和raob之间的偏差(MWR观察减去raobs)和根均线误差(RMSES)也显然缩短 - 血清观察。温度,相对湿度和蒸汽密度的偏差从4.6Ω·k,9?%和1.43?克?在天顶观察中减少到Δ0.6Ω·k,?2?%和0.10? 3分别在非天性观察中。由海拔地区的MWR检索和raob配置文件之间的差异存在相同的情况。案例研究表明,雪对MWR检索精度的影响比在轻微降雪中更严重,但偏离天顶观察可以减轻降雪的影响。 MWR测量在降雪中变得较低,主要是由于检索算法,这不考虑雪的效果,而基于基数顶部的累积雪增加了MWR测量的信号噪声。随着在弧度侧面的重力落后的降雪,脱象的观察更像是raobs的大气条件。

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