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首页> 外文期刊>International Journal of Naval Architecture and Ocean Engineering >Practical investigation of a monopod fabrication method and the numerical investigation of its up-righting process
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Practical investigation of a monopod fabrication method and the numerical investigation of its up-righting process

机译:独脚架制造方法的实践研究及其直立过程的数值研究

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摘要

ABSTRACT The principal purpose of this paper is to present a novel two phases rational scenario applied in constructing an offshore monopod platform; in which the two phases are the all-ground horizontal construction phase and the post-construction phase. Concerning the all-ground construction phase, a brief investigation of its different stages, i.e., pre-fabrication, fabrication, pre-assembling, positioning, assembling, and surface finishing is introduced. The important practical aspects of such construction phase are investigated without going into the nitty-gritty of the details involved therein. Concerning the post-construction phase, a clear investigation of its sequential stages, i.e., lifting, moving and up-righting is introduced. A finite element model (FEM) of the monopod platform is created to perform the structural analysis necessary to decide the suspension points/devices and the handling scenario during the various stages of the post-construction phase on a rational wise. Such structural analysis is performed within the framework of the three dimensional quasi-static modeling and analysis aiming at simulating the realistic handling condition, and hence introducing a reliable physical interpretation of the numerical results. For the whole effort to be demonstrated efficiently, the results obtained are analyzed, the conclusions are presented, and few related recommendations are suggested.
机译:摘要本文的主要目的是提出一种新颖的两阶段合理情景,用于构建海上单脚平台。其中两个阶段是全地面水平施工阶段和施工后阶段。关于全地面施工阶段,简要介绍了其不同阶段,即预制,制造,预组装,定位,组装和表面处理。对这种构造阶段的重要实践方面进行了研究,而没有涉及其中的细节。关于施工后阶段,将对其后续阶段,即提升,移动和直立阶段进行清晰的调查。创建了独脚架平台的有限元模型(FEM),以执行必要的结构分析,从而在合理的范围内确定后期构造阶段各个阶段的悬挂点/设备和处理方案。这种结构分析是在三维准静态建模和分析的框架内进行的,目的是模拟实际的处理条件,从而为数值结果引入可靠的物理解释。为了有效地说明整个工作,对获得的结果进行了分析,给出了结论,并提出了一些相关的建议。

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