阮超宇, 史博会, 丁麟, 柳扬, 黄启玉, 张静楠, 宫敬. 基于可靠性的天然气管道水合物形成概率[J]. 油气储运, 2017, 36(5): 487-494. DOI: 10.6047/j.issn.1000-8241.2017.05.002
引用本文: 阮超宇, 史博会, 丁麟, 柳扬, 黄启玉, 张静楠, 宫敬. 基于可靠性的天然气管道水合物形成概率[J]. 油气储运, 2017, 36(5): 487-494. DOI: 10.6047/j.issn.1000-8241.2017.05.002
RUAN Chaoyu, SHI Bohui, DING Lin, LIU Yang, HUANG Qiyu, ZHANG Jingnan, GONG Jing. The formation probability of hydrate in natural gas pipelines based on reliability[J]. Oil & Gas Storage and Transportation, 2017, 36(5): 487-494. DOI: 10.6047/j.issn.1000-8241.2017.05.002
Citation: RUAN Chaoyu, SHI Bohui, DING Lin, LIU Yang, HUANG Qiyu, ZHANG Jingnan, GONG Jing. The formation probability of hydrate in natural gas pipelines based on reliability[J]. Oil & Gas Storage and Transportation, 2017, 36(5): 487-494. DOI: 10.6047/j.issn.1000-8241.2017.05.002

基于可靠性的天然气管道水合物形成概率

The formation probability of hydrate in natural gas pipelines based on reliability

  • 摘要: 随着海洋油气田开发逐步进入深海领域,深水流动安全保障将面临巨大的挑战,分析天然气管道水合物形成概率是保障管道安全流动的基础。基于可靠性的极限状态方法,综合考虑管道运行参数的不确定性,选择管道入口温度、压力及流量为随机变量,以热力学和动力学为基础,建立概率极限状态方程,并运用LHS-Monte Carlo方法、POD方法计算水合物的形成概率,实现了以概率形式定量描述天然气管道中水合物形成风险的目的。结果表明:管道水合物形成概率曲线达到稳定所需的样本总数随管道具体情况和随机变量参数而变化;水合物形成概率对不同随机影响因素的敏感性不同;临界过冷度对天然气管道水合物形成概率有较大的影响。合理选择或调整入口随机参数能够有效降低水合物形成概率,从而保障管道的安全运行。

     

    Abstract: As the development targets of offshore oil and gas fields transfers to deep sea areas, the deep-water flow assurance is faced with enormous challenges. The analysis on the formation probability of hydrate in natural gas pipelines is the basis to ensure the safe flow in pipelines. In this paper, the probability limit state equation was established according to thermodynamics and kinetics. In this equation, inlet temperature, pressure and flow rate are taken as random variables after the uncertainty of pipeline operation parameters was investigated comprehensively by means of the reliability based limit state method. Then, hydrate formation probability was calculated by LHS-Monte Carlo method and Proper Orthogonal Decomposition (POD) method. Thus, the risk of hydrate formation in natural gas pipelines can be described quantitatively in the form of probability. It is indicated that the sum of samples which is necessary for stable formation probability curve of hydrate in natural gas pipelines varies with the pipeline circumstances and the random variables. The sensitivity of hydrate formation probability to different random influential factors is different. The formation probability of hydrate in natural gas pipelines is affected more by the critical subcooling. Hydrate formation probability can be reduced effectively by selecting or adjusting the inlet random parameters rationally, so that the safe operation of pipelines can be ensured.

     

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