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On the interpretation of the layered structures detected by mesosphere-stratosphere-troposph radars in dual frequency domain interferometry mode

机译:关于双频域干涉测量模式下中层-平流层-对流层雷达探测到的分层结构的解释

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The frequency domain interferometry (FDI) technique has been developed for probing thin layered structures of the atmosphere. The position and thickness of a single layer embedded within the scattering volume can be deduced from the complex normalized cross correlation (coherence) of received signals at two closely spaced frequencies. Applied in the vertical pointing direction, this technique identified layered structures ("FDI layers") of 50-200 m in thickness in the lower atmosphere. These structures are 1 order of magnitude thicker than observed temperature sheets (about 10-m thick) which are very likely responsible for the main part of the VHF radar echoes in vertical direction. In this paper, although the ambiguity of the dual FDI technique is well known, we emphasize that the FDI layers do not necessarily correspond to a simple is well atmospheric layer, they can also be interpreted as a more complex structure of very thin atmospheric layers. A simple model, introduced as an example, shows that the FDI layer thickness can also approximately be interpreted as the vertical separation of two very thin atmospheric layers. This result can explain by itself the differences between the estimated thicknesses by balloon and FDl radar techniques. Finally, we stress that comparisons with high-resolution in situ measurements are urgently needed for interpreting the FDI layers.
机译:已经开发了频域干涉测量(FDI)技术来探测大气的薄层结构。可以从两个紧密间隔的频率处接收信号的复杂归一化互相关(相干)来推导嵌入到散射体积内的单层的位置和厚度。沿垂直指向方向应用时,该技术确定了在较低大气层中厚度为50-200 m的分层结构(“ FDI层”)。这些结构比观察到的温度表(约10微米厚)厚1个数量级,这很可能是垂直方向上VHF雷达回波的主要部分。在本文中,尽管双重FDI技术的歧义是众所周知的,但我们强调FDI层不一定对应于简单的良好大气层,它们也可以解释为非常薄的大气层的更复杂的结构。作为示例介绍的一个简单模型显示,FDI层的厚度也可以近似解释为两个非常薄的大气层的垂直分隔。该结果本身可以解释气球和FD1雷达技术估算的厚度之间的差异。最后,我们强调,为了解释FDI层,迫切需要与高分辨率原位测量进行比较。

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