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Subscour Displacements for Pipeline Design: State of Practice for Kashagan Project

机译:管道设计的子公司流离失所:喀什根项目的实践状态

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The Kashagan field is located in an area of the Caspian Sea that is subject to ice scouring of the seabed. Offshore pipelines are buried to mitigate the ice loads arising from scours, and the optimum burial depth is an important design consideration. Within the design process, it is the displacements in the soils below the scouring keel (subscour displacements) which need to be estimated as inputs to the pipeline design. Quantifying subscour displacements has been the subject of intense study for the Kashagan project in the last 10 years, involving physical tests at a range of scales, advanced numerical modelling and several join industry research projects. This paper describes the development of subscour displacement models for sands and clays for the Kashagan project. It starts with a background to the work that has been done in a broader context before describing the specific relationships defined for Phase 2 of the project, as well as some of the uncertainties involved. There is still much work to be done to refine the models that are still a work-in-progress.
机译:Kashagan领域位于海洋海洋的一个地区,受海底冰的冰。海上管道被埋葬以减轻冲刷引起的冰块,最佳的埋藏深度是重要的设计考虑因素。在设计过程中,它是污垢龙骨(子频率位移)以下的土壤中的位移,这需要估计为管道设计的输入。量化的子系统位移是过去10年来克什加曼项目激烈研究的主题,涉及在一系列秤,先进的数值模型和几个加入行业研究项目中进行物理测试。本文介绍了Kashagan项目的沙子和粘土的子公司位移模型的开发。它从在更广泛的上下文中完成的工作开始,在描述为项目第2阶段定义的具体关系以及所涉及的一些不确定性。仍有很大的工作要做,优化仍然是一项工作的模型。

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