采用弧形矩形管基座法(CRPB)的新型沉船打捞方法:"长江口 II 号 "古沉船打捞项目案例研究

IF 8.2 1区 工程技术 Q1 ENGINEERING, CIVIL Underground Space Pub Date : 2024-03-07 DOI:10.1016/j.undsp.2023.11.016
Qianwei Zhuang , Guofang Gong , Dongrong Zhou , Chi Zhang , Xin Huang , Xiaodong Zhu , Weihao Yuan , Deng Li
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引用次数: 0

摘要

沉船打捞是一个风险大、耗时长、费用高的过程。虽然海岸线和公海上有许多沉船,但沉船的打捞过程却鲜有报道。长江口二号 "沉船的综合打捞采用了一种新颖的方法,用 22 根紧密锁定的弧形矩形管组成一个水密底座,将沉船包裹在里面。利用工程船上的大功率起重机将基座吊出水面。这是首次在沉船打捞工程中使用隧道法,大大减少了对沉船及其堆放物的干扰,从而最大限度地保持了沉船的原状和完整性。本研究阐述了打捞方法和过程的基本概念。提供了新打捞方法中关键问题的解决方案,包括顶升力预测和打捞系统结构设计的主要考虑因素。介绍了 "长江口二号 "沉船打捞系统的设计和打捞过程。监测到的顶力、管道变形和观察到的水密性验证了所提出方法的有效性和高效性。最后还介绍了建议方法的其他可能应用场景。
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Novel wreck salvaging method using curved rectangular pipe basing method: A case study of “Yangtze River Estuary II” ancient shipwreck salvage project

Shipwreck salvage is a risky, time-consuming, and expensive process. Although there are many sunken ships along coastlines and in the open seas, the salvage process of a sunken ship has rarely been reported. The integrated salvage of the “Yangtze River Estuary II” shipwreck used a novel method with 22 closely locked curved rectangular pipes to form a watertight base that wrapped the shipwreck inside. The basing was lifted out of the water using a powerful crane situated on an engineering ship. For the first time, the tunneling method was used in a shipwreck salvage project, significantly reducing the disturbance to the shipwreck and its stowage, thereby preserving the original state and integrity of the shipwreck to the greatest extent. In this study, the basic concepts of the salvage method and process are explained. Solutions to critical issues in the new salvage method are provided, including jacking force prediction and major considerations for the structural design of the salvage system. The design of the salvage system and salvage process of the “Yangtze River Estuary II” shipwreck are introduced. The monitored jacking force, pipe deformation, and observed water-tightness verified that the proposed method was effective and efficient. Other possible application scenarios for the proposed method are presented at the end.

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来源期刊
Underground Space
Underground Space ENGINEERING, CIVIL-
CiteScore
10.20
自引率
14.10%
发文量
71
审稿时长
63 days
期刊介绍: Underground Space is an open access international journal without article processing charges (APC) committed to serving as a scientific forum for researchers and practitioners in the field of underground engineering. The journal welcomes manuscripts that deal with original theories, methods, technologies, and important applications throughout the life-cycle of underground projects, including planning, design, operation and maintenance, disaster prevention, and demolition. The journal is particularly interested in manuscripts related to the latest development of smart underground engineering from the perspectives of resilience, resources saving, environmental friendliness, humanity, and artificial intelligence. The manuscripts are expected to have significant innovation and potential impact in the field of underground engineering, and should have clear association with or application in underground projects.
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