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STRUCTURAL RESPONSE OF PIPELINE FREE SPANS BASED ON BEAM THEORY

机译:基于光束理论的管道自由跨度的结构响应

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One of the main risk factors for subsea pipelines exposed on the seabed is fatigue failure of free spans due to ocean current or wave loading. This paper describes how the structural response of a free span, as input to the fatigue analyses, can be assessed in a simple and still accurate way by using improved beam theory formulations. In connection with the release of the DNV Recommended Practice, DNV-RP-F105 "Free Spanning Pipelines", the simplified structural response quantities have been improved compared to previous codes. The boundary condition coefficients for the beam theory formulations have been updated based an effective span length concept. This concept is partly based on theoretical studies and partly on a large number of FE analyses. The updated expressions are general and fit all types of soil and pipe dimensions for lower lateral and vertical vibration modes. The present paper focus on estimation of simplified response quantities such as lower natural frequencies and associated mode shapes. Hydrodynamical aspects of Vortex Induced Vibrations (VIV) are outside the scope of this paper.
机译:由于海洋电流或波浪荷载,海底暴露在海底上暴露的海底管道的主要危险因素之一是自由跨度的疲劳失效。本文介绍了自由跨度的结构响应,作为疲劳分析的输入,可以通过使用改进的光束理论配方以简单且仍准确的方式进行评估。与DNV推荐实践的释放相关联,与先前的代码相比,DNV-RP-F105“自由跨越管道”,简化的结构响应量得到了改进。基于有效跨度长度概念,已经更新了光束理论配方的边界条件系数。这一概念部分基于理论研究,部分原因是大量FE分析。更新的表达式是一般的,适用于较低横向和垂直振动模式的所有类型的土壤和管道尺寸。本文侧重于估计简化响应量,例如较低的自然频率和相关模式形状。涡旋诱导振动(VIV)的流体动力方面超出了本文的范围。

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