首页> 外文会议>ASME(American Society of Mechanical Engineers) Pressure Vessels and Piping Conference 2007 >EVALUATION OF STORAGE TANK FLOATING ROOFS FOR STRESS AND STABILITY DUE TO EARTHQUAKE INDUCED LIQUID SLOSHING
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EVALUATION OF STORAGE TANK FLOATING ROOFS FOR STRESS AND STABILITY DUE TO EARTHQUAKE INDUCED LIQUID SLOSHING

机译:地震引起的液流晃荡引起的储罐漂浮面应力和稳定性评估

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Considerable interest has developed in the engineering community concerning the damage to the floating roof of oil storage tanks due to liquid sloshing from earthquake loading. Engineering groups in countries bordering the circum-Pacific seismic belt in particular are devoting extensive efforts to obtaining solutions capable of identifying vulnerable roof designs and developing modifications to improve strength. The recent efforts of the Japanese Fire Disaster and Management Authority (FDMA) as a result of 1995 Kobe and the 2003 Tokachi-Oki earthquakes are examples of recent work in this area. This paper focuses on efforts to analyze floating roof structures for stress and stability under typical earthquake velocity spectrums using advanced finite element methods. It employs ideas included in the Japanese FDMA studies, work done as part of the ASCE Committee on Gas and Liquid Fuel Lifelines, and some original methods developed at ExxonMobil. It has been applied to several tank designs and been submitted as a suitable advance analysis method to the Japanese FDMA. The paper provides both the theoretical foundation as well as an example covering typical tank geometry.
机译:在工程界,由于地震载荷引起的液体晃动对储油罐的浮顶造成的损害引起了极大的关注。特别是与环太平洋地震带接壤的国家中的工程小组正在全力以赴,以寻求能够识别易受伤害的屋顶设计并进行改进以提高强度的解决方案。 1995年日本神户大地震和2003年十胜-大木地震之后,日本消防和管理管理局(FDMA)的最新努力就是该领域近期工作的例子。本文致力于使用先进的有限元方法来分析浮式屋顶结构在典型地震速度谱下的应力和稳定性。它采用了日本FDMA研究中包含的思想,作为ASCE气体和液体燃料生命线委员会一部分的工作以及埃克森美孚公司开发的一些原始方法。它已应用于多种储罐设计,并已作为适当的提前分析方法提交给日本FDMA。本文提供了理论基础以及涵盖典型储罐几何形状的示例。

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