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首页> 外文期刊>Atmospheric Measurement Techniques >All-sky information content analysis for novel passive microwave instruments in the range from 23.8 to 874.4?GHz
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All-sky information content analysis for novel passive microwave instruments in the range from 23.8 to 874.4?GHz

机译:新型无源微波仪器在23.8至874.4?GHz范围内的全天候信息内容分析

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We perform an all-sky information content analysis for channels in the millimetre and sub-millimetre wavelength with 24?channels in the region from 23.8 to 874.4 GHz. The employed set of channels corresponds to the instruments ISMAR and MARSS, which are available on the British FAAM research aircraft, and it is complemented by two precipitation channels at low frequencies from Deimos. The channels also cover ICI, which will be part of the MetOp-SG mission. We use simulated atmospheres from the ICON model as basis for the study and quantify the information content with the reduction of degrees of freedom (ΔDOF). The required Jacobians are calculated with the radiative transfer model ARTS. Specifically we focus on the dependence of the information content on the atmospheric composition. In general we find a high information content for the frozen hydrometeors, which mainly comes from the higher frequency channels beyond 183.31 GHz (on average 3.10 for cloud ice and 2.57 for snow). Considerable information about the microphysical properties, especially for cloud ice, can be gained. The information content about the liquid hydrometeors comes from the lower frequency channels. It is 1.69 for liquid cloud water and 1.08 for rain using the full set of channels. The Jacobians for a specific cloud hydrometeor strongly depend on the atmospheric composition. Especially for the liquid hydrometeors the Jacobians even change sign in some cases. However, the information content is robust across different atmospheric compositions. For liquid hydrometeors the information content decreases in the presence of any frozen hydrometeor, for the frozen hydrometeors it decreases slightly in the presence of the respective other frozen hydrometeor. Due to the lack of channels below 183 GHz liquid hydrometeors are hardly seen by ICI. However, the overall results with regard to the frozen hydrometeors also hold for the ICI sensor. This points to ICI's great ability to observe ice clouds from space on a global scale with a good spatial coverage in unprecedented detail.
机译:我们对毫米和亚毫米波长范围内的23.8至874.4 GHz范围内的24个信道进行全天候信息内容分析。使用的通道组对应于ISFA和MARSS仪器,可在英国FAAM研究飞机上使用,并由Deimos的两个低频降水通道进行补充。这些频道还涵盖了ICI,这将是MetOp-SG任务的一部分。我们使用来自ICON模型的模拟大气作为研究的基础,并通过减少自由度(ΔDOF)来量化信息内容。所需的雅可比定律是用辐射传递模型ARTS计算的。具体来说,我们专注于信息内容对大气成分的依赖性。总的来说,我们发现冷冻水凝物的信息含量很高,这主要来自超过183.31 GHz的高频频道(云冰平均为3.10,雪平均为2.57)。可以获得有关微物理特性的大量信息,尤其是对于云冰而言。有关液态水凝物的信息内容来自低频通道。使用全套通道的液态云水为1.69,雨水为1.08。特定云水凝物的雅可比定律在很大程度上取决于大气成分。特别是对于液体水凝物,雅可比人在某些情况下甚至会改变符号。但是,信息内容在不同的大气成分中都很稳定。对于液态水凝结物,信息含量在任何冷冻水凝结物存在时降低,对于冷冻水凝结物,其信息含量在相应的其他冷冻水凝结物存在时略有降低。由于缺少183 GHz以下的通道,ICI几乎看不到液态水凝物。但是,有关冷冻水凝物的总体结果也适用于ICI传感器。这表明ICI具有在全球范围内以前所未有的细节覆盖良好的空间覆盖范围,从太空观测冰云的强大能力。

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