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The Seismic Reliability of Offshore Structures Based on Nonlinear Time History Analyses

机译:基于非线性时间历史分析的海上结构的地震可靠性

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Regarding the past earthquakes damages to offshore structures, as vital structures in the oil and gas industries, it is important that their seismic design is performed by very high reliability. Accepting the Nonlinear Time History Analyses (NLTHA) as the most reliable seismic analysis method, in this paper an offshore platform of jacket type with the height of 304 feet, having a deck of 96 feet by 94 feet, and weighing 290 million pounds has been studied. At first, some Push-Over Analyses (POA) have been preformed to recognize the more critical members of the jacket, based on the range of their plastic deformations. Then NLTHA have been performed by using the 3-components accelerograms of 100 earthquakes, covering a wide range of frequency content, and normalized to three Peak Ground Acceleration (PGA) levels of 0.3 g, 0.65 g, and 1.0 g. By using the results of NLTHA the damage and rupture probabilities of critical member have been studied to assess the reliability of the jacket structure. Regarding that different structural members of the jacket have different effects on the stability of the platform, an “importance factor” has been considered for each critical member based on its location and orientation in the structure, and then the reliability of the whole structure has been obtained by combining the reliability of the critical members, each having its specific importance factor.
机译:关于过去的地震损害海洋结构物,如石油和天然气行业的重要结构,重要的是,他们的抗震设计是非常高的可靠性进行。接受非线性时程分析(NLTHA)作为最可靠的地震分析方法,在本文中夹套式与304英尺高度的海上平台,通过94英尺具有96英尺的甲板上,并称重2.9亿磅一直研究过。首先,基于其塑性变形的范围,已经预先成形以识别夹克更关键的构件的一些推倒途分析(POA)。然后NLTHA已经通过使用3-部件100级地震accelerograms,覆盖范围广的频率内容进行的,并归一化到三个峰值加速度(PGA)为0.3g,0.65克,和1.0克的水平。通过使用NLTHA的结果,已经研究了关键构件的损坏和破裂概率来评估夹套结构的可靠性。关于夹克的不同结构构件对平台的稳定性产生不同的影响,基于结构中的位置和方向,每个关键成员都考虑了“重要性因素”,然后整个结构的可靠性已经存在通过组合关键构件的可靠性而获得,每个都具有其特定的重要因素。

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