Research on 3-D Precise Mapping System for Deformation Defects of Submarine Pipeline

IF 0.7 4区 工程技术 Q4 ENGINEERING, OCEAN Marine Technology Society Journal Pub Date : 2023-02-27 DOI:10.4031/mtsj.57.1.6
P. Zhou, Xiaoqin Peng, Haipei Zhu, Xueyu Ren, P. Lin, Kaichuang Wang, Haonan Li, Zhonghui Zhou, Jia-wang Chen, Jun Li, Xuehua Chen, Guomin Cao, Xuyun Gao
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Abstract

Abstract The submarine oil pipeline has many advantages, such as large oil transportation capacity, and being fast and economical. However, long-term laid submarine oil pipelines are affected by reciprocating load of water flow, subsidence caused by soil liquefaction, ship anchorage operation, etc. In severe cases, it causes overall distortion of a small section of the submarine pipeline, profoundly affecting the safety of the submarine pipeline, which is a significant safety hazard for the health of the marine environment and potentially impacting social and economic benefits. Taking the Cezi-Zhenhai submarine pipeline in the sea area between Ningbo and Zhoushan as an example, many deformation defects in the pipeline have been found through internal inspection, and there is a trend of further deterioration. However, the existing external detection of submarine pipeline deformation can only collect limited data through mechanical dots for rough inversion. This does not meet the accuracy requirements of repairing existing submarine pipeline clamps. Therefore, we propose a real-time visualization surveying and mapping system for the submarine pipeline based on a 3-D laser and a separately designed electronic control system. Our research team performed actual mapping work for the Cezi-Zhenhai submarine pipeline and achieved an excellent mapping control effect. A steady monitoring image and good control effect of moving parts are obtained, and the data obtained by 3-D laser processing perfectly represent the actual state of the submarine pipeline. Predictably, the large-scale application of this system will provide a solid technical guarantee for the health of submarine pipelines.
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海底管道变形缺陷三维精确测绘系统研究
摘要海底输油管道具有输油能力大、快速经济等优点。然而,长期铺设的海底石油管道会受到水流往复荷载、土壤液化引起的沉降、船舶锚地作业等的影响。严重时会导致海底管道的一小段整体变形,深刻影响海底管道的安全,这对海洋环境的健康是一个重大的安全隐患,并可能影响社会和经济效益。以宁波至舟山海域的册子镇海海底管道为例,通过内部检查发现管道存在多处变形缺陷,且有进一步恶化的趋势。然而,现有的海底管道变形外部检测只能通过机械点进行粗略反演来收集有限的数据。这不符合修复现有海底管夹的精度要求。因此,我们提出了一种基于三维激光和单独设计的电子控制系统的海底管道实时可视化测绘系统。我们的研究团队对策子-镇海海底管道进行了实际测绘工作,取得了良好的测绘控制效果。获得了稳定的监测图像和良好的运动部件控制效果,三维激光处理获得的数据完美地反映了海底管道的实际状态。可以预见,该系统的大规模应用将为海底管道的健康提供坚实的技术保障。
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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来源期刊
Marine Technology Society Journal
Marine Technology Society Journal 工程技术-工程:大洋
CiteScore
1.70
自引率
0.00%
发文量
83
审稿时长
3 months
期刊介绍: The Marine Technology Society Journal is the flagship publication of the Marine Technology Society. It publishes the highest caliber, peer-reviewed papers, six times a year, on subjects of interest to the society: marine technology, ocean science, marine policy, and education.
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