船体装配子工艺的开发

St open Pub Date : 2022-12-19 DOI:10.48188/so.3.12
Stipe Antunović, B. Ljubenkov, Karmela Prlac
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引用次数: 0

摘要

目的:通过改变造船现场基础部件的装配方式,使船体装配工艺的发展成为可能,从而缩短装配工期,降低成本。其中一种可能性是增加基本建筑单元的尺寸和质量,以及建筑现场的起重机能力。方法:船体装配阶段采用分段、分段、模块等船体装配方法。在世界上最好的造船厂里,船只都是由一块块或一块块的模块建造而成,其中尽可能多地安装了设备。本文采用有限元法对船体结构块体进行结构分析,确定了船体结构块体垂直运输的最佳工艺规程。结果:用船体分段装配法代替船体分段装配法,可以实现船体装配分工序的开发。对于本文提出的船舶,运输到建筑工地的块体质量增加了3倍,因此建筑单元数量减少了65%。这减少了建筑工地的运输活动,并将装配过程的持续时间缩短了20%。本文表明,为保证运输安全,对砌块结构进行临时加劲加固是必要的。通过结构分析可以优化它们的数量和布局。结论:数值有限元方法、软件包和计算机的发展使结构分析在解决造船技术中的工程问题方面得到了更广泛的应用。对现实情况的模拟,广泛的分析和大量的结果成为可能,它们提高了知识水平,使生产过程中的决策更好。
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Development of the ship hull assembly sub-process
Objective: The development of the ship hull assembly pro-cess is possible by changing the method of assembly of basic parts at the building site, which would shorten the duration of the process and lead to cost reduction. One of the pos-sibilities is to increase the dimensions and mass of basic building units, as well as the crane capacity at the building site.Methods: Ship hull assembly methods involving sections, blocks and modules are used in the hull assembly phase. In the world’s best shipyards, ships are built from blocks or modules, in which as much equipment as possible is in-stalled. This paper uses the finite element method (FEM) for structural analysis, and its results serve to define the opti-mal technological instructions for the vertical transport of ship hull structure blocks.Results: The development of the ship hull assembly sub-pro-cess can be achieved by using the hull block assembly meth-od instead of the hull section assembly method. For the ship presented in this paper, the mass of a block transported to the building site was increased 3 times, so the number of building units was reduced by 65%. This reduces trans-port activities on the building site and shortens the dura-tion of the assembly process by 20%. This paper shows that strengthening the block structure with temporary stiffen-ers is necessary for safe transport. It is possible to optimize their number and layout by using structural analysis.Conclusion: The development of numerical finite element methods, software packages, and computers allow wider use of structural analysis in solving engineering problems in shipbuilding technology. The simulation of realistic sit-uations, a wide range of analyses and a large number of results become possible, and they raise the level of knowledge and enable better decision-making in the pro-duction process.
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