首页> 外文会议>International conference on ocean, offshore and arctic engineering;OMAE2009 >STRENGTH ASSESSMENT OF MEMBRANE LNG TANK STRUCTURE BASED ON DIRECT CALCULATION OF STRUCTURAL RESPONSE
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STRENGTH ASSESSMENT OF MEMBRANE LNG TANK STRUCTURE BASED ON DIRECT CALCULATION OF STRUCTURAL RESPONSE

机译:基于结构响应直接计算的膜式液化天然气罐结构强度评估

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Expanding LNG market reinforces the demand tor new concepts of LNG transportation. Membrane LNG vessel design widely applied until now, encounters new challenges due to requirement for larger vessel's capacities and more flexible operation in partially filled conditions.Present assessment procedures of LNG tank structure usually combine small scale sloshing loads measurement and containment system structural strength assessment, on a comparative base for the reference and target vessels. For the new LNG design, more rational methods become essential in the assessment procedure.Some improvements in the strength assessment procedure of membrane LNG tank structure is presented in this paper, combining small scale sloshing load measurements with direct FEM calculation of structural response.The complexity of problem is the consequence of: stochastic nature of impulsive sloshing loads, material used for the cargo containment system at cryogenic temperature and strong hydro-elastic interaction during impacts. Disadvantages of small scale testing and limits of today's numerical methods require that further in the future certain simplifications and assumptions should remain.In the paper, method for the design loads selection from the small scale sloshing measurements is described and discussed. The impulse, transferred over the corresponding impacted surface, is the base for the comparison of successive violent sloshing loads. The stochastic nature and statistics of measured loads are discussed. The structural analysis of LNG tank structure under selected design sloshing loads, using on-linear and time-dependant explicit FE calculations, is described.This paper presents Bureau Veritas recent developments and their applications in the field of sloshing assessment.
机译:扩大液化天然气市场加强了对液化天然气运输新概念的需求。迄今为止,膜LNG容器的设计得到广泛应用,由于要求更大的容器容量和在部分填充条件下更灵活的操作而面临着新的挑战。 目前,液化天然气储罐结构的评估程序通常在参考船和目标船的比较基础上,结合小规模的晃荡载荷测量和围护系统结构强度评估。对于新的液化天然气设计,在评估程序中必须采用更合理的方法。 本文提出了对膜式液化天然气储罐结构强度评估程序的一些改进,将小规模的晃荡载荷测量与结构响应的直接有限元计算相结合。 问题的复杂性是以下结果的结果:脉冲晃荡载荷的随机性,在低温下用于货物围护系统的材料以及冲击过程中强烈的水弹相互作用。小规模测试的缺点和当今数值方法的局限性要求在将来进一步保持某些简化和假设。 在本文中,描述并讨论了从小规模晃荡测量中选择设计荷载的方法。脉冲在相应的受冲击表面上传递,是比较连续剧烈晃荡载荷的基础。讨论了被测载荷的随机性和统计量。描述了使用线性和随时间变化的显式有限元计算在选定设计晃荡载荷下的液化天然气储罐结构的结构分析。 本文介绍了必维国际检验集团的最新发展及其在晃荡评估领域中的应用。

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