基于船载双频测深仪探测海底软泥层厚度的技术研究

    Technical research on detecting the thickness of the seabed soft mud layer based on shipborne dual-frequency echo-sounder

    • 摘要: 基于2018年国家自然科学基金委员会渤黄海共享航次数据,通过解译和分析航次中利用船载双频测深仪(200 kHz和12 kHz)获取的大量走航原始声学数据,结合同步测量的温盐数据剖面进行校准比对,解决了声学数据探测海洋界面层不准的难题,并通过融合处理校准后的2种频率的声学数据,提出了一种利用双频测深仪识别海底软泥层厚度的新方法。该方法通过200 kHz声波的高分辨率特性识别软泥层上界面,利用12 kHz声波的穿透能力识别软泥层下界面,进而计算得出海底软泥层厚度。识别结果得到了现场标准贯入数据的验证,表明该方法可用于研究黄海海域海底软泥层厚度时间变化及空间展布。同时在当今海洋大数据时代背景下,对海量历史数据的进一步挖掘和高效利用对于推进海洋调查取得突破具有重要意义。

       

      Abstract: Based on the data from the shared Cruise supported by the National Natural Science Foundation of China in Bohai and Yellow Sea in 2018, this study processed and analyzed a large amount of underway raw acoustic data acquired by a shipborne dual-frequency echo sounder (200 kHz and 12 kHz). By integrating synchronously measured temperature and salinity profiles for calibration, the common issue of inaccurate detection of ocean interface layers using acoustic data was effectively resolved. Through the fusion of the calibrated acoustic data from both frequencies, a new method was established to identify the thickness of seabed mud layers using dual-frequency echo sounder. The method leverages the high-resolution characteristics of the 200 kHz acoustic wave to identify the upper interface of the mud layer and the strong penetration capability of the 12 kHz’s to identify the lower interface, thereby enabling the calculation of mud layer thickness. The results were validated by in-situ standard penetration test data, demonstrating that the method is applicable for studying the temporal variation and spatial distribution of seabed mud layer thickness in the Yellow Sea. In the context of the current era of marine big data, this study also highlights the significance of further mining and efficiently utilizing historical data to promote breakthroughs in marine survey research.

       

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