Turbulence and optics sampling from an autonomous underwater vehicle

E. Levine, R. Lueck, P. Donaghay, D. Conners, T. Gagliardi, R. C. Hanson, R. Shell
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引用次数: 5

Abstract

The adaptation of synergistic sensor technologies to AUV platforms enables a new class of sampling strategies not available with older technologies. The combined turbulence, optics, and hydrographic data acquisition capabilities can be utilized for near-synoptic horizontal mapping in a variety of estuarine and continental shelf process studies. Horizontal profiles of turbulence are obtained using two piezoceramic shear probes orthogonally to the direction of motion, a single ultrafast thermistor, and three orthogonal accelerometers, mounted on a sting. Horizontal profiles of optical absorption and attenuation are obtained with a WET Labs AC-9 instrument mounted in a wet well, with the proper flow rate provided by a pump. Field trials in the Narragansett Bay tidal estuary in January 1996 resulted in obtaining turbulence and optical data from the UUV during near-spring ebb tide. UUV-based observations were made in the deep pycnocline, as well as in the ocean surface layer during wind row occurrences. A portion of the data has been examined for evaluation of noise effects on the turbulence data. In general, this analysis that meaningful estuarine turbulence data can be obtained from an autonomous underwater vehicle, and its relation to the optics data can be studied.
自主水下航行器的湍流和光学采样
将协同传感器技术应用于AUV平台,可以实现旧技术无法实现的新型采样策略。结合湍流、光学和水文数据采集能力,可用于各种河口和大陆架过程研究中的近天气水平制图。湍流的水平剖面是用两个垂直于运动方向的压电陶瓷剪切探针、一个超快热敏电阻和三个垂直的加速度计安装在一根刺上得到的。通过安装在湿井中的WET Labs AC-9仪器,通过泵提供适当的流量,获得了光吸收和衰减的水平剖面。1996年1月在纳拉甘西特湾潮汐口进行了实地试验,获得了近春季退潮时UUV的湍流和光学数据。基于uuv的观测在深斜区进行,以及在风行发生期间在海洋表层进行。为了评价噪声对湍流数据的影响,对部分数据进行了检查。总的来说,本文分析了自主水下航行器可以获得有意义的河口湍流数据,并可以研究其与光学数据的关系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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