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Joint met-ocean description for design and operations of marine structures

机译:海洋结构设计和运行的联合海洋描述

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摘要

For several engineering applications, joint met-ocean probabilities are required. Recently increasing attentions have been given to importance of inclusion wind-sea and swell components in the joint description. Presence of wind-sea and swell will affect design and operability of fixed and floating offshore structures as well as LNG terminals. The study presents a joint met-ocean model which can be applied for design and operations of marine structures, including LNG platforms. The model is fitted to hindcast data from four locations: Southern North Sea, West Shetland, and Northwest Shelf of Australia and off coast of Nigeria. Uncertainties related to the proposed fits are examined focusing on location specific features of the wave climate and an adopted partitioning procedure for the wave components. Implications of the uncertainties on design and operation criteria of LNG platforms are discussed and demonstrated by examples. (C) 2015 Elsevier Ltd. All rights reserved.
机译:对于几种工程应用,需要联合海洋概率。最近,在联合描述中,越来越多地关注包含风浪和涌浪分量的重要性。风浪和涌浪的存在将影响固定和浮动海上结构以及LNG接收站的设计和可操作性。该研究提出了一种联合海洋模型,该模型可用于包括LNG平台在内的海洋结构的设计和运营。该模型适用于来自四个地点的后播数据:澳大利亚的北海南部,西设得兰群岛和西北大陆架以及尼日利亚的沿海地区。检验与拟议拟合相关的不确定性,重点是波浪气候的位置特定特征以及对波浪成分采用的分区程序。通过实例讨论并论证了不确定性对液化天然气平台设计和运行标准的影响。 (C)2015 Elsevier Ltd.保留所有权利。

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