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首页> 外文期刊>Atmospheric Measurement Techniques >Vertical wind profiling from the troposphere to the lower mesosphere based on high-resolution heterodyne near-infrared spectroradiometry
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Vertical wind profiling from the troposphere to the lower mesosphere based on high-resolution heterodyne near-infrared spectroradiometry

机译:基于高分辨率外差近红外光谱辐射测定法的垂直风分析从对流层到较低的介体圈

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摘要

We propose a new technique of remote wind measurements based on Doppler analysis of a CO2 absorption line in the 1.605 mu m overtone band measured in the direct Sun observation geometry. Heterodyne spectroradiometric measurements of the solar radiation passing through the atmosphere provide an unprecedented spectral resolution up to lambda/delta lambda similar to 6 x 10(7), with a signal-to-noise ratio of more than 100. The shape of the individual rotational line profile provides an unambiguous relationship between the offset from the line center and the altitude at which the respective part of the line profile is formed. Therefore, an inverse problem may be posed in order to retrieve the vertical distribution of wind because with retrievals the vertical resolution is compromised by a spectral resolution and the signal-to-noise ratio of the measurements. A close coincidence between the measured and synthetic absorption line is reached, with retrieved wind profiles between the surface and 50 km being in good agreement with reanalysis models. This method may pose an alternative to widely employed lidar and radar techniques.
机译:我们提出了一种基于在直接阳光观察几何形状中测量的1.605μm泛音带中的CO2吸收线的多普勒分析的新技术的远程风测量技术。通过大气的太阳辐射的外差分光辐射测量值提供前所未有的光谱分辨率,其λ/ deltaλ类似于6×10(7),信号到噪声比大于100.个体旋转的形状线轮廓提供来自线中心的偏移与线路轮廓的各个部分的高度之间的明确关系。因此,可以提高逆问题以便检索风的垂直分布,因为通过检索,垂直分辨率被频谱分辨率和测量的信噪比损害。达到测量和合成吸收线之间的密切巧合,在表面之间检索到的风廓和50公里与Reanalysis模型很好。该方法可以占据广泛采用的LIDAR和雷达技术的替代方案。

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