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Implementation and Validation of a Retrieval Algorithm for Profiling of Water Vapor From Differential Attenuation Measurements at Microwaves

机译:微波差动衰减测量中水汽剖面反演算法的实现与验证

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摘要

The knowledge of the water vapor (WV) distribution in the Earth's atmosphere is of great importance for weather prediction. Meteorological models, in particular, the so-called limited area models, can assimilate humidity measurements, increasing the reliability of the simulated atmospheric dynamics. An important improvement can be achieved, for instance, if we are able to provide the total column with a sufficient precision and accuracy. In this paper, the novel normalized differential spectral attenuation (NDSA) approach is applied to retrieve the vertical profile of WV-and thus the total column-from measurements of differential attenuation signals at microwaves. A forward model (FM) has been used to simulate the raytracing of a microwave signal from a transmitter to a receiver in the atmosphere by using the 3-D atmospheric parameters as provided by a numerical weather prediction (NWP) model. From the NDSA measurement, the integrated WV (IWV) content can be directly derived. A further retrieval code is able to invert the measurements of IWV along the path length, providing the vertical humidity profile, which is directly related to the total vertical column assimilated by weather prediction models. In this paper, we show that the values of the total column can be retrieved with a precision and accuracy up to about 0.6% and 2.1%, respectively, which could have a positive impact on NWP models at short time scale.
机译:了解地球大气中水蒸气(WV)的分布对于天气预报非常重要。气象模型,尤其是所谓的有限区域模型,可以吸收湿度,从而提高了模拟大气动力学的可靠性。例如,如果我们能够为整个色谱柱提供足够的精度和准确性,则可以实现重要的改进。在本文中,将新颖的归一化差分频谱衰减(NDSA)方法应用于从微波中差分衰减信号的测量中检索WV的垂直剖面,从而检索总列。通过使用数值天气预报(NWP)模型提供的3-D大气参数,正向模型(FM)已用于模拟从大气中的发射机到接收机的微波信号的射线追踪。通过NDSA测量,可以直接得出WV(IWV)的综合含量。进一步的检索代码能够沿路径长度反转IWV的测量值,从而提供垂直湿度曲线,该曲线直接与天气预报模型吸收的总垂直栏有关。在本文中,我们表明总列的值可以分别以约0.6%和2.1%的精度和准确度检索,这可能在短时间内对NWP模型产生积极影响。

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