首页> 外文会议>OMAE2010;International conference on ocean, offshore and arctic engineering >OPTIMIZATION STUDY OF PIPELINE ROCK ARMOUR PROTECTION DESIGN BASED ON FINITE ELEMENT ANALYSIS
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OPTIMIZATION STUDY OF PIPELINE ROCK ARMOUR PROTECTION DESIGN BASED ON FINITE ELEMENT ANALYSIS

机译:基于有限元分析的管道岩体防护设计优化研究

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The design of pipeline protection with rock armour berms has been traditionally based on model testing because there has been no closed-form analytical solution available to resolve the complex interaction between the anchor, anchor chain, seabed soil and rock armour.Compared to the costly physical model test, a numerical procedure properly set up allows effective and extensive study on various rock berm configurations. It is expected that better optimized pipeline rock armour protection berm can be designed to offer appreciable savings on project cost.The authors have developed a Finite Element Analysis (FEA) based procedure which can predict the clearance between the anchor fluke tip and pipeline as well as the pushing force on the pipeline during anchor dragging. Both the clearance and pushing force can be used to assess the potential anchor damage to a pipeline with rock backfill protection. The FEA results have been successfully validated against results obtained from physical model tests.A series of numerical tests are performed considering the variations in the trench profile, the armour rock shape, rock particle size and grading properties etc. The protection mechanism of the rock armour berm, with regard to the above factors, is discussed to provide a better understanding for the significance of each parameter in the protection design. Guidelines in achieving an optimized rock berm protection design are also given.
机译:传统上,用岩石装甲护堤进行管道保护的设计是基于模型测试的,因为尚无封闭形式的分析解决方案可用来解决锚,锚链,海床土壤和护甲之间的复杂相互作用。 与昂贵的物理模型测试相比,正确设置数值程序可以对各种岩石护堤配置进行有效而广泛的研究。可以设计更好的优化管道岩石装甲防护护堤,以期节省大量工程成本。 作者开发了一种基于有限元分析(FEA)的方法,该方法可以预测锚定uke尖与管道之间的间隙以及锚定拖动期间管道上的推力。间隙和推力都可用于评估具有岩石回填保护功能的管道的潜在锚损坏。相对于从物理模型测试获得的结果,已经成功验证了FEA结果。 考虑了沟槽轮廓,装甲岩石形状,岩石粒径和坡度特性等方面的变化,进行了一系列的数值测试。针对上述因素,对装甲护堤的保护机理进行了探讨,以提供更好的保护效果。了解保护设计中每个参数的重要性。还提供了实现优化的岩壁防护设计的指南。

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