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ON-BOTTOM STABILITY ANALYSIS OF SUBSEA PIPELINES UNDER COMBINED IRREGULAR WAVES AND CURRENTS

机译:基于不规则波和电流下海底管道的底部稳定性分析

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The objective of the paper is to study the effect of different parameters regarding on-bottom stability of subsea pipelines under combined irregular waves and currents. The effect of friction coefficient is first investigated. The development of lateral displacement and penetration for three different friction coefficients are compared for sandy and clayey seabed respectively when applied wave and current conditions are kept same for all the cases. The friction coefficient affects the soil resistance force and further changes the initial time when the pipeline starts to move in the lateral direction. The accumulated displacement reduces for large friction coefficient and it results in less penetration. The total effect of the increasing friction coefficient depends on the competition between the increased friction force and the reduced passive soil resistance force. The pipeline usually crosses different types of soil along the route. Hence, different combinations of soil types along the route are applied in the analysis. The soil property at middle of the pipeline is found to be important when the boundary conditions at both ends are fixed. Three analyzing procedures, namely standard 3-hour procedure, the procedure recommended by PONDUS and the procedure recommended by DNV, could be used for on-bottom stability analysis under storm conditions. The comparison of these procedures shows that the procedure recommended by PONDUS is the most appropriate for the storm conditions. The procedure recommended by DNV considers the build-up of initial penetration before the storm; and it could be applied in the analysis when the penetration is stabilized after the start -up time (20% of 3-hour).
机译:本文的目的是研究不同参数关于海底管道的底部稳定性的影响,在不规则的波浪和电流下。首先研究了摩擦系数的影响。在施加的波和电流条件下对所有病例保持相同时,将横向位移和三种不同摩擦系数进行三种不同摩擦系数的渗透的发展。摩擦系数影响土阻力,进一步改变管道在横向上移动时的初始时间。累积的位移降低了大摩擦系数,导致渗透较小。增加摩擦系数的总效果取决于摩擦力增加和无源土阻力减少的竞争。管道通常沿着路线穿过不同类型的土壤。因此,在分析中应用了沿着路线的土壤类型的不同组合。当两端的边界条件固定时,发现管道中间的土壤属性很重要。三个分析程序,即标准的3小时步骤,Pondus建议的程序和DNV推荐的程序可用于暴雨条件下的底部稳定性分析。这些程序的比较表明,Pondus推荐的程序是最适合风暴条件的过程。 DNV推荐的程序考虑了风暴前初始渗透的积累;并且当在起始时间(占3小时的20%)后渗透稳定时,可以应用。

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