在对流条件下基于云的测量激光雷达传感器的发展

R. Vishnu, Y. Bhavani Kumar, T. N. Rao, A. K. M. Nair, A. Jayaraman
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引用次数: 0

摘要

大气对流是一种与热输送有关的自然现象。对流在白天是强烈的,在夏季是强烈的。在这些时期经历了与强风有关的严重的地面加热。热带被认为是强对流的源区。雷暴云的形成在这段时间很常见。云底位置及其相关动力学对于理解对流对大气的影响是非常重要的。激光雷达对米氏散射很敏感,比利用无线电频谱的仪器更适合在大气中定位云。雷雨云由比重计组成,并强烈散射激光。最近,位于Tirupati附近Gadanki的国家大气研究实验室(NARL)开发了一种激光雷达技术,该实验室是太空部(DOS)的一个单位。激光雷达技术采用斜路径操作,可实时提供云基位置的高分辨率测量。基于激光的遥感技术允许以7.5米范围分辨率每秒测量大气。高分辨率的数据可以评估云底的上升气流。激光雷达还利用气溶胶作为大气动力学的示踪剂,提供实时对流边界层高度。开发的激光雷达传感器计划升级为扫描设备,以了解空间方向的云动力学。在本报告中,我们介绍了激光雷达传感器技术及其在Gadanki激光雷达站点对流条件下的高分辨率云基测量技术的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development of lidar sensor for cloud-based measurements during convective conditions
Atmospheric convection is a natural phenomena associated with heat transport. Convection is strong during daylight periods and rigorous in summer months. Severe ground heating associated with strong winds experienced during these periods. Tropics are considered as the source regions for strong convection. Formation of thunder storm clouds is common during this period. Location of cloud base and its associated dynamics is important to understand the influence of convection on the atmosphere. Lidars are sensitive to Mie scattering and are the suitable instruments for locating clouds in the atmosphere than instruments utilizing the radio frequency spectrum. Thunder storm clouds are composed of hydrometers and strongly scatter the laser light. Recently, a lidar technique was developed at National Atmospheric Research Laboratory (NARL), a Department of Space (DOS) unit, located at Gadanki near Tirupati. The lidar technique employs slant path operation and provides high resolution measurements on cloud base location in real-time. The laser based remote sensing technique allows measurement of atmosphere for every second at 7.5 m range resolution. The high resolution data permits assessment of updrafts at the cloud base. The lidar also provides real-time convective boundary layer height using aerosols as the tracers of atmospheric dynamics. The developed lidar sensor is planned for up-gradation with scanning facility to understand the cloud dynamics in the spatial direction. In this presentation, we present the lidar sensor technology and utilization of its technology for high resolution cloud base measurements during convective conditions over lidar site, Gadanki.
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