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SOIL CHARACTERISATION FOR INSTALLING AND OPERATING DEEP-WATER PIPELINES

机译:用于安装和操作深水管道的土壤特性

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Deep-water developments rely on pipeline and riser systems to transfer hydrocarbon products to floating facilities or potentially longer tie-back pipelines to shallow water platforms/ onshore facilities. Depending on the nature of the product and operational conditions, the pipeline and riser system design may need to consider a range of dynamic processes during operation such as (ⅰ) controlled lateral buckling of the pipeline in order to relieve excessive constrained axial forces induced by temperature and pressure changes in the system; (ⅱ) the accumulation of pipeline axial displacement or 'walking'; and (ⅲ) evolution of the pipe-soil interaction at the riser seabed touchdown point due to the dynamic behaviour of the riser. Under these conditions, the reliable structural assessment of the pipeline system relies upon accurate assessment of the pipeline-soil interaction (PSI), from the initial lay embedment of the pipeline to the evolution of the lateral and axial response over the lifetime of the facilities. Accurate assessment of these PSI parameters requires adequate characterisation of the seabed topography, seabed processes (e.g. geohazards) and the soil properties. This paper proposes ways for efficient planning of the geophysical and geotechnical site investigation activities and subsequent soil element and physical model testing for the assessment of relevant PSI parameters in deep-water.
机译:深水开发依赖于管道和立管系统,将烃产品转移到浮动设施或潜在的粘附管道到浅水平台/陆上设施。根据产品的性质和操作条件,管道和提升管系统设计可能需要考虑在操作期间的一系列动态过程(Ⅰ)控制管道的控制横向屈曲,以便缓解温度诱导的过度约束轴力系统的压力变化; (Ⅱ)管道轴向位移或“行走”的积累; (Ⅲ)引立速度升降机海床触控点管土相互作用的演变。在这些条件下,管道系统的可靠结构评估依赖于准确评估管道 - 土壤相互作用(PSI),从管道的初始嵌入管道嵌入到设施的寿命上的横向和轴向响应的演变。对这些PSI参数的准确评估需要对海底地形,海底过程(例如Geohazards)和土壤性质进行足够的表征。本文提出了高效规划地球物理和地理位置调查活动和后续土壤元素和物理模型试验的方法,对深水中相关PSI参数进行评估。

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