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RESEARCH ON THE RELATIONSHIP BETWEEN CLOUD TEMPERATURE AND OPTICAL DEPTH USING ROTATIONAL AND VIBRATIONAL RAMAN LIDAR

机译:旋转振动拉曼利达云温度与光学深度关系研究

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Clouds play a key role in the climate system, for they can result in a warming or a cooling effect according to their characteristics and altitudes. Raman Lidars have been proven to be a very useful remote sensing tool to characterize cloud properties and locations. In this paper, cloud temperature and optical depth are obtained using rotational Raman (RR) and vibrational Raman techniques. Results of cloud temperature and optical depth (OD) observed by the Hampton University (HU) Rotational-Vibrational Raman Lidar are presented. The paper discusses the influence of cloud OD on temperature of the cloud base and top. From these measurements, the relation of low-altitude cloud OD and temperature is summarized. These analyses are unique in that they combine simultaneous measurements of these quantities that can lead to an improvement in the understanding of cloud radiation transfer and effects.
机译:云在气候系统中发挥关键作用,因为它们可以根据其特征和高度导致温暖或冷却效果。 RAMAN LIDARS已被证明是一个非常有用的遥感工具,可在云属性和位置来表征云属性和位置。在本文中,使用旋转拉曼(RR)和振动拉曼技术获得云温度和光学深度。汉普顿大学(HU)旋转振动拉曼利达LIDAR观察到的云温度和光学深度(OD)的结果。本文讨论了云OD对云底座温度的影响。从这些测量中,总结了低空云OD和温度的关系。这些分析是独一无二的,因为它们相结合了这些数量的同时测量,这可能导致了解云辐射转移和效果的理解。

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