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ADVANCES IN FREQUENCY AND TIME DOMAIN COUPLED ANALYSIS FOR FLOATING PRODUCTION AND OFFLOADING SYSTEMS

机译:漂浮生产和卸载系统的频率和时域耦合分析的研究进展

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With the move to the development of remote, deepwater fields, increasing use is being made of floating production, storage and offloading (FPSO) facilities from which oil is intermittently offloaded to a shuttle tanker via offloading lines and an anchor leg mooring buoy. The response of the individual components of these systems is significantly influenced by hydrodynamic and mechanical coupling between adjacent components, precluding the use of traditional analysis techniques such as displacement RAOs derived from tank model tests or diffraction/radiation analyses of the independent components. Consequently, the reliable and accurate design of these complex systems requires an analysis tool capable of determining the fully coupled response of each of the individual components of the system. A recently-developed time domain coupled analysis tool has been extended to incorporate a frequency domain coupled analysis capability. This tool combines radiation/diffraction theory with a non-linear finite element (FE) structural analysis technique used for the analysis of slender offshore structures. This paper describes the application of frequency domain analysis to the coupled FE/floating structure problem, with particular consideration given to the linearisation of viscous drag loads on floating structures and the treatment of low-frequency second-order loads in the frequency domain. Results from frequency domain and time domain coupled analyses of a typical West of Africa type offloading system are compared, highlighting areas of application where frequency domain coupled analysis can offer significant benefits when used in conjunction with time domain analysis. Based on this, recommendations are made for the appropriate use of frequency and time domain coupled analysis for this type of system.
机译:随着遥远,深水场的发展,由于浮动生产,储存和卸载(FPSO)设施,越来越多的使用是通过卸载线和锚腿系泊浮标的浮动生产,储存和卸载(FPSO)设施。这些系统的各个组分的响应受相邻部件之间的流体动力和机械耦合的显着影响,防止了传统分析技术,例如衍生自罐模型试验或独立组分的衍射/辐射分析的位移RaOS。因此,这些复杂系统的可靠和准确的设计需要一种分析工具,该分析工具能够确定系统的每个各个组件的完全耦合响应。已经扩展了最近开发的时域耦合分析工具以结合频域耦合分析能力。该工具将辐射/衍射理论与非线性有限元(Fe)结构分析技术相结合,用于分析细长的海上结构。本文介绍了频域分析对耦合Fe /浮动结构问题的应用,特别考虑到粘性结构上的粘性阻力负载的线性化和频域中的低频二阶负载的定性。频域和时域耦合分析非洲卸载系统典型西部的耦合分析,突出显示频域耦合分析在与时域分析结合使用时提供显着优势的应用。基于此,建议采用适当使用这种类型系统的频率和时域耦合分析。

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