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SOIL CHARACTERISATION FOR INSTALLING AND OPERATING DEEP-WATER PIPELINES

机译:安装和运行深水管道的土壤特征

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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:深水开发依靠管道和立管系统将碳氢化合物产品转移到浮动设施,或将可能更长的回输管道转移到浅水平台/陆上设施。根据产品的性质和运行条件,管道和立管系统的设计可能需要在运行过程中考虑一系列动态过程,例如(ⅰ)控制管道的横向屈曲,以减轻温度引起的过大约束轴向力系统中的压力变化; (ⅱ)管道轴向位移或“走动”的积累; (ⅲ)由于立管的动态行为,在立管海床着陆点处的管土相互作用演变。在这种情况下,对管道系统的可靠结构评估取决于对管道-土壤相互作用(PSI)的准确评估,从管道的初始铺设嵌入到设施使用寿命内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床地形,海床过程(例如地质灾害)和土壤特性进行充分表征。本文提出了有效规划地球物理和岩土现场调查活动以及随后的土壤元素和物理模型测试的方法,以评估深水中的相关PSI参数。

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