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Development and testing of the Active Temperature, Ozone andudMoisture Microwave Spectrometer (ATOMMS) cm and mmudwavelength occultation instrument

机译:活性温度,臭氧和 ud的开发和测试水分微波光谱仪(ATOMMS)cm和mm ud波长掩星仪

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摘要

We present initial results from testing a new remote sensing system called the Active Temperature, Ozone and Moisture Microwave Spectrometer (ATOMMS). ATOMMS is designed as a satellite-to-satellite occultation system for monitoring climate. We are developing the prototype instrument for an aircraft to aircraft occultation demonstration. Here we focus on field testing of the ATOMMS instrument, in particular the remote sensing of water by measuring the attenuation caused by the 22 GHz and 183 GHz water absorption lines.udOur measurements of the 183 GHz line spectrum along an 820 m path revealed that the AM 6.2 spectroscopic model provdes a much better match to the observed spectrum than the MPM93 model. These comparisons also indicate that errors in the ATOMMS amplitude measurements are about 0.3%. Pressure sensitivity bodes well for ATOMMS as a climate instrument. Comparisons with a hygrometer revealed consistency at the 0.05 mb level, which is about 1% of the absolute humidity.udInitial measurements of absorption by the 22 GHz line made along a 5.4 km path between two mountaintops captured a large increase in water vapor similar to that measured by several nearby hygrometers. A storm passage between the two instruments yielded our first measurements of extinction by rain and cloud droplets. Comparisons of ATOMMS 1.5 mm opacity measurements with measured visible opacity and backscatter from a weather radar revealed features simultaneously evident in all three datasets confirming the ATOMMS measurements. The combined ATOMMS, radar and visible information revealed the evolution of rain and cloud amounts along the signal path during the passage of the storm. The derived average cloud water content reached typical continental cloud amounts. These results demonstrated a significant portion of the information content of ATOMMS and its ability to penetrate through clouds and rain which is critical to its all-weather, climate monitoring capability.ud
机译:我们提供了测试一种新的遥感系统的初步结果,该系统称为活性温度,臭氧和水分微波光谱仪(ATOMMS)。 ATOMMS被设计为用于监视气候的卫星到卫星掩星系统。我们正在开发用于飞机对飞机掩星演示的原型仪器。在这里,我们着重于ATOMMS仪器的现场测试,尤其是通过测量22 GHz和183 GHz吸水线引起的衰减来遥感水。 ud我们对820 m路径上183 GHz线谱的测量表明: AM 6.2光谱模型与MPM93模型相比具有更好的匹配性。这些比较还表明,ATOMMS幅度测量中的误差约为0.3%。压力敏感性对于ATOMMS作为气候仪器来说是一个好兆头。与湿度计的比较显示出在0.05 mb的水平上的一致性,大约是绝对湿度的1%。 ud在两个山顶之间沿着5.4 km路径进行的22 GHz线的吸收的初始测量值捕获了与由附近几个湿度计测得的两种仪器之间的暴风雨通道使我们首次测量到雨滴和云滴造成的灭绝。将ATOMMS 1.5毫米不透明度测量值与气象雷达测得的可见不透明度和反向散射进行比较,发现在所有三个数据集中同时具有明显的特征,从而确认了ATOMMS测量值。 ATOMMS,雷达和可见信息的组合揭示了暴风雨过后沿信号路径的雨量和云量的演变。得出的平均云水含量达到了典型的大陆云量。这些结果证明了ATOMMS信息内容的很大一部分及其穿透云层和降雨的能力,这对于其全天候,气候监测能力至关重要。 ud

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