首页> 外文会议>International Conference on Ocean, Offshore and Arctic Engineering >OFFSHORE BREAKWATERS FOR LNG AND BULK TERMINALS: A DESIGN METHODOLOGY FOR DETERMINING BREAKWATER LAYOUT
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OFFSHORE BREAKWATERS FOR LNG AND BULK TERMINALS: A DESIGN METHODOLOGY FOR DETERMINING BREAKWATER LAYOUT

机译:LNG和散装终端的海上防堤:用于确定防波堤布局的设计方法

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Over the last decades LNG and bulk terminals have been constructed in many countries. Many of these terminals Have been located in sheltered sites without significant influence of swell and wind seas. As the worldwide gas market continues to grow supplying domestic, industrial and power plant projects, there is a continuous interest in new LNG terminals. With the growing gas demand LNG terminals are planned at exposed sites where the need of a breakwater is important for the ability of the facility to maintain operations and to ensure survivability of the terminal infrastructure. Studies are carried out for LNG terminal concept with the main focus on the need for a breakwater protecting the facility which will have significant impact on the CAPEX (Capital Expenditure). The mooring layout of the FSU/FSRU and LNG carrier whether perpendicular or parallel to the breakwater in addition to the planned operations determine the protection area behind the breakwater. The objective of this study is to establish design curves relating the different environmental and terminal parameters such as wave conditions, berthing facility layout, protection area and breakwater layout. These curves are derived based on the results of numerical simulations for wave transformation process of offshore waves propagating inside the terminal area. More than 700 cases are carried out in this study considering a range of wave periods, breakwater lengths, breakwater type (caisson and rubble mound), facility area dimensions and two incoming waves direction, i.e perpendicular and oblique. The simulations are carried out using the software REFONDE which is based on resolving the mild slope equation for irregular waves. The results of the study are presented in the form of curves and generalized to be used by terminal developers, designers and contractors for general guidance in future projects. Up to the authors' knowledge, such curves for the design of marine terminals are not available at present. From this overview, a design methodology is developed to determine breakwater layouts during the early planning phase of project considering wave conditions, facility layout and terminal operations.
机译:在过去的几十年中,LNG和批量终端已经在许多国家建造。这些终端中的许多终端都位于庇护地点,而无需膨胀和风海洋的重大影响。随着全球气体市场继续增长国内,工业和电厂项目,对新的LNG终端进行了持续的兴趣。随着不断增长的气体需求,LNG终端计划在暴露的位置计划,其中需要防波堤的需要对于维护操作的能力并确保终端基础设施的生存能力是重要的。对LNG终端概念进行了研究,主要重点关注对保护该设施的防堤的需求,这将对资本支出(资本支出)产生重大影响。除了计划的操作之外,FSU / FSRU和LNG载体的系泊布局是否垂直或平行于防波堤,确定防波堤后面的保护区域。本研究的目的是建立与不同环境和终端参数相关的设计曲线,例如波条条件,贝尔大部分设施布局,保护区和防堤布局。基于在终端区域内传播的海上波的波形变换过程的数值模拟结果来导出这些曲线。本研究在这项研究中进行了700多种,考虑到一系列波浪周期,防堤,防堤和瓦砾土墩,设施面积尺寸和两个进入波浪方向,即垂直和倾斜。使用基于解决不规则波的软件refonde来执行模拟。该研究的结果以曲线的形式呈现,广泛地由终端开发商,设计师和承包商用于未来项目的一般指导。达到作者的知识,目前不可用的海洋码头设计的这种曲线。从该概述来看,开发了一种设计方法,以确定在考虑波条件,设施布局和终端操作的项目的早期规划阶段期间的防波堤布局。

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