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Development of Entering Order and Work-Volume Assignment Algorithms for the Management of Piping Components in Offshore Structure Construction

机译:开发进入秩序和工作量分配算法,用于近海结构建设管道组件管理

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摘要

In the early 2010s, with rising oil prices and increasing purchase orders for offshore structures for deep-sea resource development, the shipyards that took these orders suffered unexpected losses. Unlike the construction of commercial carrier vessels, the construction of offshore structures necessary to develop deep-sea resources is difficult to manage due to the complexity of the outfitting process of the topside structure, which is a plant for gas and oil production and treatment. Piping components in particular, which comprise most of the design items, are difficult to manage because they involve 2 to 3 times the man-hours and up to 10 times the quantity of items compared to commercial carrier vessels. Due to not only high man-hours and quantity but also large fluctuations caused by design changes and long procurement lead times, process delays that result in delayed compensation frequently occurred. In response, Samsung Heavy Industries developed an integrated management system for piping components. This study describes the entering order optimization algorithm and work-volume assignment optimization algorithm, which are the core algorithms of this system. The entering order optimization algorithm determines the optimal installation order considering the procurement status of the piping components and the installation readiness status of the installation work site, through which it determines the entering order of the piping components. The algorithm seeks to accelerate the completion rate of installation of the piping components. Next, to minimize delivery delays of sub-contractors to the shipyard, this study developed a work-volume assignment optimization algorithm that can equalize the load on multiple sub-contractors considering the raw material readiness status and the production capacity of the sub-contractors, in terms of materials that must be ordered from external sub-contractors among the piping components whose entering order was determined. Finally, applying the algorithm developed using actual shipyard data resulted in an accelerated completion rate of installation and improved balance of load in terms of volume assigned to the sub-contractors.
机译:在2010年初,油价上涨和增加海洋结构的海上结构采购订单,造船厂占据了这些订单的造船厂遭受了意外的损失。与商业运输船的建设不同,由于顶部结构的装备过程的复杂性,难以管理开发深海资源所需的海上结构的建设,这是一种用于天然气和石油生产和治疗的植物。特别是管道部件,包括大部分设计项目,难以管理,因为它们涉及与商业载体血管相比的物品数量的2至3倍。由于不仅是高人数和数量,而且由设计变化和长期采购交付时间造成的大波动,经常发生延迟补偿的过程延误。在回应中,三星重工业为管道部件开发了一个综合管理系统。本研究描述了进入秩序优化算法和工作体积分配优化算法,这是该系统的核心算法。输入订单优化算法根据安装工作站点的管道组件的采购状态和安装准备状态,确定最佳安装顺序,通过此确定管道组件的输入顺序。该算法旨在加速管道组件的安装完成速率。接下来,为了最大限度地减少分包商的交付延迟到造船厂,这项研究开发了一种工作体积分配优化算法,可以通过考虑原材料准备状态和子承包商的生产能力来均衡多个子承包商的负荷,就必须在确定订单的管道组件中必须从外部分包商订购的材料而言。最后,应用使用实际造船厂数据开发的算法产生了加速完成速率,并在分配给子承包商的卷方面提高了负载的平衡。

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