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Retrieval of Vertical Air Motion in Precipitating Clouds Using Mie Scattering and Comparison with In Situ Measurements

机译:使用MIE散射和原位测量比较促使云垂直空气运动的检索

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For the first time, the Mie notch retrieval technique is applied to airborne cloud Doppler radar observations in warm precipitating clouds to retrieve the vertical air velocity profile above the aircraft. The retrieval algorithm prescribed here accounts for two major sources of bias: aircraft motion and horizontal wind. The retrieval methodology is evaluated using the aircraft in situ vertical air velocity measurements. The standard deviations of the residuals for the retrieved and in situ measured data for an 18-s time segment are 0.21 and 0.24 ms(-1) , respectively; the mean difference between the two is 0.01 ms(-1) . For the studied cases, the total theoretical uncertainty is less than 0.19 ms(-1) and the actual retrieval uncertainty is about 0.1 ms(-1) . These results demonstrate that the Mie notch technique combined with the bias removal procedure described in this paper can successfully retrieve vertical air velocity from airborne radar observations with low spectral broadening due to Doppler fading, which enables new opportunities in cloud and precipitation research. A separate spectral peak due to returns from the cloud droplets is also observed in the same radar Doppler spectra and is also used to retrieve vertical air motion. The vertical air velocities retrieved using the two different methods agree well with each other, and the correlation coefficient is as high as 0.996, which indicates that the spectral peak due to cloud droplets might provide another way to retrieve vertical air velocity in clouds when the Mie notch is not detected but the cloud droplets' spectral peak is discernable.
机译:首次,MIE NOTCH检索技术应用于在温暖的沉淀云中的空气传播的云多普勒雷达观测中,以检索飞机上方的垂直空气速度曲线。这里规定的检索算法占两个主要偏置来源:飞机运动和水平风。使用飞机在原位垂直空气速度测量中评估检索方法。检索的残留物和原位测量数据的标准偏差分别为0.21和0.24ms(-1);两者之间的平均差异为0.01ms(-1)。对于所研究的情况,总理论不确定性小于0.19ms(-1),实际检索不确定度约为0.1ms(-1)。这些结果表明,MIE NOTCH技术与本文中描述的偏置去除程序相结合,可以成功地从机载雷达观测中检索垂直空气速度,由于多普勒衰落,由于多普勒衰落,这使得云和降水研究中的新机会能够实现新的机会。在相同的雷达多普勒光谱中也观察到由​​于来自云液滴的返回的单独的光谱峰值,并且还用于检索垂直空气运动。使用两种不同方法检索的垂直空气速度彼此吻合良好,相关系数高达0.996,这表明由于云液滴引起的光谱峰可以提供另一种方式来检索云时的垂直空气速度凹口未被检测,但云液滴的光谱峰值是可辨别的。

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