测深侧扫声呐在近岸海洋工程中的应用以海底管道调查为例

    The application of bathymetric sidescan sonar system in nearshore marine engineering: a case study of submarine pipeline survey

    • 摘要: 测深侧扫声呐通过集成测深与侧扫功能,可同步采集高分辨率海底地形数据和地貌影像信息,能够有效提升近岸浅水海底地形地貌一体化调查的作业效率。本文针对传统测深侧扫声呐存在的测深精度低、噪音干扰严重、固有探测盲区等问题,介绍了一种基于多相位回声测深侧扫技术(Multi Phase Echo Sounder, MPES)的测深侧扫声呐系统EdgeTech 6205 S2,系统阐述了其技术原理、性能参数及系统组成,并以某海底石油管道调查工程项目为例,分析了测深侧扫声呐在近岸浅水调查中的性能表现与技术优势。研究结果表明,多相位回声测深侧扫声呐在保持高分辨侧扫图像优点的同时,实现了宽覆盖、高精度测深功能。利用同步获取的三维测深和双频侧扫声呐配准图像,可对海底管道调查区内礁石、未回填管沟、裸露管道、锚链沟等主要海底地貌特征进行准确识别、定位分析,这对近岸海洋工程调查手段选择具有参考意义。

       

      Abstract: The bathymetric sidescan sonar system (BSSS) can synchronously collect high-resolution seabed terrain data and geomorphic image information by integrating bathymetric and sidescan functions, effectively improving the operation efficiency of nearshore seabed topography and geomorphology integrated survey. Aiming at the shortcomings of traditional BSSS, such as low sounding accuracy, serious noise interference and inherent detection blind area, this paper introduces EdgeTech 6205 S2 based on multi-phase echo sounder (MPES), systematically describes its technical principle, performance parameters and system composition, and taking a submarine oil pipeline survey project as an example, the performance and technical advantages of BSSS in nearshore marine engineering are analyzed. The results show that the MPES sonar not only maintains the advantages of high-resolution sidescan image, but also realizes the function of wide coverage and high-precision sounding. The three-dimensional bathymetric and dual frequency sidescan sonar registration images obtained synchronously can be used to accurately identify and locate the main submarine geomorphic features in the submarine pipeline survey area, such as reefs, backfilled trenches, exposed pipelines, anchor chain trenches, etc., which has reference significance for the selection of nearshore marine engineering survey methods.

       

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