Water Hammer in Offloading Systems: Contribution of Detailed Modeling to Design and Safety

B. Pierre, J. Gudmundsson
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引用次数: 3

Abstract

This paper (SPE 134140) was accepted for presentation at the SPE Annual Technical Conference and Exhibition, Florence, Italy, 19–22 September 2010, and revised for publication. Original manuscript received 1 June 2010. Revised manuscript received 20 October 2010. Paper peer approved 8 November 2010. Summary The second-largest oil spillage in Norwegian petroleum history occurred on 12 December 2007 when the Statfjord A offloading system ruptured. Results of numerical simulations of pressure transients in the offloading system are presented. Of particular interest is the influence of acoustic properties of pipeline sections on propagation of pressure transients. The damaged-offloading-system geometry and characteristics, as well as the acoustic properties, are described. The paper describes numerical simulations of pressure transients in the offloading pipeline. The paper shows how detailed modeling and accurate estimation of acoustic velocities influence local maximum increases in pressure in an offloading system.
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卸载系统中的水锤:详细建模对设计和安全的贡献
这篇论文(SPE 134140)于2010年9月19日至22日在意大利佛罗伦萨举行的SPE年度技术会议和展览上发表,并进行了修订。原稿于2010年6月1日收到。2010年10月20日收稿。论文于2010年11月8日获得同行批准。挪威石油历史上第二大石油泄漏事件发生在2007年12月12日,当时Statfjord A卸载系统破裂。给出了卸载系统压力瞬变的数值模拟结果。特别令人感兴趣的是管道截面的声学特性对压力瞬变传播的影响。描述了受损卸载系统的几何形状和特征,以及声学特性。本文描述了卸载管道压力瞬变的数值模拟。本文阐述了详细的声速建模和准确的声速估计对卸载系统中局部最大压力增加的影响。
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