首页> 外文会议>ASME international conference on ocean, offshore and arctic engineering >EFFECTIVE FULL-HISTORY FINITE ELEMENT MODELLING OF PIPE-IN-PIPE FLOWLINE SYSTEM - FROM INSTALLATION TO OPERATION
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EFFECTIVE FULL-HISTORY FINITE ELEMENT MODELLING OF PIPE-IN-PIPE FLOWLINE SYSTEM - FROM INSTALLATION TO OPERATION

机译:管内流水线系统的有效全历史有限元建模-从安装到操作

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Developments of oil and gas reservoirs in South China Sea are presently accelerated, to cope with the significant increase in energy demand from the mainland. Pipe-in-Pipe (PIP) flowline systems have been widely employed in this region and are continuously being considered for further developments. This is due to its significant thermal insulation capacity to deal with the High Pressure and High Temperature (HPHT) issue. However, the methods in industry for design of PIP systems usually have two side extremes. Simplified analytical approach may lack of accuracy and detailed FE analysis always brings considerably sophisticated modelling and post-processing tasks. To overcome this situation, COTEC Offshore Solutions, together with its mother company, China Offshore Oil Engineering Company, have developed a cost-effective, beam elements based, 3D simulation model using ABAQUS, a general purpose finite element analysis (FEA) package. The mode allows complicated structures of PIP system to be represented in an effective way and adopts a representation of stinger for S-lay installation analysis. A full-history time-dominate analysis from installation to operation is performed in one model, rather than the commonly used 'snapshot' analysis. In this study, a simplified modeling guidance of PIP components have been suggested. On the basis of the guidance, a novel 3D beam-elements based model has been produced to accurately represent complex PIP structural behaviors, but with minimum increase in modeling complexity. The analysis is carried out on the time-domain basis, which permits the full strain and stress history of the installation and operation to be observed and the most onerous time-point during the full installation and operation to be captured.
机译:目前,南海的油气藏开发正在加速发展,以应对来自大陆的能源需求的显着增长。管内管线(PIP)流水线系统已在该地区得到广泛采用,并且正在不断被考虑用于进一步的开发。这是由于其强大的绝热能力可应对高压和高温(HPHT)问题。然而,工业上用于PIP系统设计的方法通常具有两个极端。简化的分析方法可能缺乏准确性,而详细的有限元分析总是带来相当复杂的建模和后处理任务。为了克服这种情况,COTEC Offshore Solutions和其母公司中国海洋石油工程公司共同开发了一种经济高效的基于梁单元的3D仿真模型,该模型使用ABAQUS(一种通用有限元分析程序包)。该模式可以有效地表示PIP系统的复杂结构,并采用托管器的形式进行S-lay安装分析。从安装到操作的完整历史时间控制分析是在一个模型中执行的,而不是通常使用的“快照”分析。在这项研究中,已提出了PIP组件的简化建模指南。在该指导的基础上,已经产生了一种新颖的基于3D束元的模型,可以准确地表示复杂的PIP结构行为,但建模复杂性的增加却最小。分析是在时域基础上进行的,这样可以观察到安装和操作的全部应变和应力历程,并且可以捕获到整个安装和操作期间最繁重的时间点。

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