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Design of the Ship-Borne Multi-Wavelength Polarization Ocean Lidar System and Measurement of Seawater Optical Properties

机译:船舶传播多波长极化海洋激光雷达系统的设计及海水光学性能测量

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A ship-borne multi-wavelength polarization ocean lidar system LOOP (Lidar for Ocean Optics Profiler) is introduced in detail, aiming to obtain high-precision vertical profiles of seawater optical characteristics. Based on Monte-Carlo simulation, the receiving telescope is designed with a variable field of view, producing system attenuation coefficient (K_(lidar)) approximating the optical parameters of seawater under a different field of view and water body conditions. At first, a sea trial was conducted in Jiaozhou Bay, and the measured diffuse attenuation coefficient (K_(d)) of seawater was 0.3m~(?1), being in good agreement compared with the results measured by field instrument TriOS. Then a field campaign was organized in the South China Sea. The measurement of the seawater diffuse attenuation (K_(d)) was 0.035m~(?1). These results support the prospects that lidar, as an effective tool supplement to traditional passive ocean color remote sensing, can provide the vertical distributions of optical properties in the upper ocean.
机译:详细介绍了船舶传播的多波长偏振海洋LIDAR系统环路(用于海洋光学分析器的LIDAR),旨在获得海水光学特性的高精度垂直型材。基于Monte-Carlo仿真,接收望远镜设计有变量视野,产生系统衰减系数(K_(LIDAR)),近似海水在不同的视野和水体状况下的光学参数。起初,在胶州湾进行了海水,海水的测量漫反应系数(K_(D))为0.3M〜(?1),与现场仪器三人测量的结果相比,与常规协议相比。然后在南海组织了一个野外活动。海水漫反射衰减的测量(K_(D))为0.035M〜(?1)。这些结果支持LIDAR作为传统被动海洋颜色遥感的有效工具补充的前景,可以提供上海的光学特性的垂直分布。

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