基于双向贯穿扫描方法的海底管道稳定性诊断研究OA
Research on stability diagnosis method of submarine pipeline based on bidirectional cross-sectional scanning
针对海底管道传统横切扫描方法仅能获取截面局部信息、难以捕捉沿管道轴向连续形变特征的问题,本文提出一种基于浅地层剖面声学探测的横切与纵切双向贯穿扫描数据融合方法.通过布设垂直和沿管道轴线的双向测线,结合参量阵浅地层剖面仪与高精度定位系统,实现对管道倾斜、截面椭圆度、纵向高程偏差、接缝错位及外部环境异常等多维参数的同步提取与综合分析.以南海某输水管道为对象开展现场试验,准确识别出管道倾斜、凹坑、障碍物及凸起等典型隐患,验证了该方法在海底管道稳定性诊断方面的有效性与工程适用性,为长距离海底管道的连续形变监测与安全运维提供了可靠技术手段.
To address the limitation of traditional cross-sectional scanning methods for submarine pipelines,which only capture localized cross-sectional information and hard to detect continuous axial deformation features,this paper proposes a data fusion method based on acoustic sub-bottom profiling that integrates both cross-sectional and longitudinal scanning.By deploying survey lines both perpendicular and parallel to the pipeline axis,and utilizing a parametric sub-bottom profiler combined with a high-precision positioning system,this method enables the simultaneous extraction and comprehensive analysis of multiple parameters,including pipeline inclination,cross-sectional ellipticity,longitudinal elevation deviation,joint misalignment,and external environmental anomalies.Field tests conducted on a water pipeline in the South China Sea successfully identified five types of typical anomalies,including pipeline tilt,depressions,obstacles,and upheavals.The results verify the effectiveness and engineering applicability of the proposed method for diagnosing submarine pipeline stability,providing a reliable technical approach for continuous deformation monitoring and safety maintenance of long-distance submarine pipelines.
莫子孟;任常斌;罗海;周世凯;刘晓晓
国家能源集团乐东发电有限公司,海南 乐东 572500浙江大学海南研究院,海南 三亚 572025||海洋环境监测与探测装备海南省工程研究中心,海南 三亚 572025浙江大学海南研究院,海南 三亚 572025||海洋环境监测与探测装备海南省工程研究中心,海南 三亚 572025海南智汇享科技有限公司,海南 海口 570100浙江大学海南研究院,海南 三亚 572025||海洋环境监测与探测装备海南省工程研究中心,海南 三亚 572025
海洋科学
海底管道浅地层扫描双向贯穿数据融合稳定性诊断
submarine pipelinessub-bottom profilingtwo-way penetrationdata fusionstability diagnosis
《海南大学学报(自然科学版中英文)》 2026 (2)
194-203,10
本文得到以下基金项目支持:国家重点研发计划项目(2024YFC2814904)和海南省深海技术产业化专项(DSTIC-CYCJ-2024002). This work was supported by the following funding projects:National Key R&D Program of China(2024YFC2814904)Hainan Provincial Deep-Sea Technology Industrialization Special Program(DSTIC-CYCJ-2024002).
评论