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Short-Range Water Temperature Profiling in a Lake with Coastal Acoustic Tomography

机译:沿海声学断层扫描的湖中的短距水温分析

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摘要

Coastal acoustic tomography (CAT), as an innovative technology, can perform water temperature measurements both in horizontal and vertical slices. Investigations on vertical slice observations are significantly fewer in number than horizontal observations due to difficulties in multi-path arrival peak identification. In this study, a two-station sound transmission experiment is carried out in Thousand-Island Lake, Hangzhou, China, to acquire acoustic data for water temperature profiling. Time windows, determined by range-independent ray simulation, are used to identify multi-path arrival peaks and obtain corresponding sound wave travel times. Special attention is paid to travel time correction, whose errors are caused by position drifting by more than 2 m of moored stations. The sound speed and temperature profiling are divided into four layers and are calculated by regularized inversion. Results show a good consistency with conductivity–temperature–depth (CTD) measurements. The root mean square error (RMSE) of water temperature is 0.3494, 0.6838, 1.0236 and 1.0985 °C for layer 1, 2, 3 and 4, respectively. The fluctuations of measurement are further smoothed by the moving average, which decreases the RMSE of water temperature to 0.2858, 0.4742, 0.7719 and 0.9945 °C, respectively. This study illustrates the feasibility and high accuracy of the coastal acoustic tomography method in short-range water temperature measurement. Furthermore, 3D water temperature field profiling can be performed with combined analyzing in horizontal and vertical slices.
机译:作为一种创新技术,沿海声学断层扫描(CAT)可以在水平和垂直切片中进行水温测量。由于多路径到达峰值识别的困难,对垂直切片观测的研究的数量显着较小。在这项研究中,一个双车站声音传输实验是在中国杭州千岛湖中进行的,以获取水温分析的声学数据。由独立于无界面光线仿真确定的时间窗口用于识别多路径到达峰值并获得相应的声波行程时间。特别注意旅行时间校正,其误差是由2米的停泊站漂移引起的。声速和温度分析分为四层,通过正则化反转来计算。结果显示了与电导率 - 温度深度(CTD)测量的良好一致性。水温的根均方误差(RMSE)分别为0.3494,0.6838,1.0236和1.0985℃,分别用于1,2,3和4层。通过移动平均水平进一步平滑测量的波动,这将水温的RMSE降至0.2858,0.4742,0.7719和0.9945℃。本研究说明了沿途声学断层摄影方法在短程水温测量中的可行性和高精度。此外,可以通过水平和垂直切片的组合分析来进行3D水温场分析。

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