刘昌岭, 李彦龙, 孙建业, 吴能友. 天然气水合物试采:从实验模拟到场地实施[J]. 海洋地质与第四纪地质, 2017, 37(5): 12-26. DOI: 10.16562/j.cnki.0256-1492.2017.05.002
引用本文: 刘昌岭, 李彦龙, 孙建业, 吴能友. 天然气水合物试采:从实验模拟到场地实施[J]. 海洋地质与第四纪地质, 2017, 37(5): 12-26. DOI: 10.16562/j.cnki.0256-1492.2017.05.002
LIU Changling, LI Yanlong, SUN Jianye, WU Nengyou. GAS HYDRATE PRODUCTION TEST: FROM EXPERIMENTAL SIMULATION TO FIELD PRACTICE[J]. Marine Geology & Quaternary Geology, 2017, 37(5): 12-26. DOI: 10.16562/j.cnki.0256-1492.2017.05.002
Citation: LIU Changling, LI Yanlong, SUN Jianye, WU Nengyou. GAS HYDRATE PRODUCTION TEST: FROM EXPERIMENTAL SIMULATION TO FIELD PRACTICE[J]. Marine Geology & Quaternary Geology, 2017, 37(5): 12-26. DOI: 10.16562/j.cnki.0256-1492.2017.05.002

天然气水合物试采:从实验模拟到场地实施

GAS HYDRATE PRODUCTION TEST: FROM EXPERIMENTAL SIMULATION TO FIELD PRACTICE

  • 摘要: 天然气水合物研究的终极目标是对其进行有效的开发利用,即实现长期安全、高效地开采,而水合物试采只是迈出了第一步。数十年的室内水合物开采方法实验及其数值模拟研究取得了显著的成果,为天然气水合物试采奠定了坚实的基础。加拿大、美国等国家先后在陆地冻土区进行了水合物试采工作,试验成果为海域水合物试采提供了宝贵的经验。2013年和2017年,日本、中国先后在不同海域实施了天然气水合物试采,并取得了成功,这是天然气水合物研究的一个里程碑式的进步,标志着天然气水合物开采技术研究从室内实验模拟逐步转到产地实施。本文回顾了各种水合物开采方法的原理及其模拟实验成果,简要介绍了水合物开采数值模拟方法与进展,评述了水合物试采的前期关键技术准备及场地实施效果,讨论了每种技术方法的局限性及面临的挑战,并针对海洋天然气水合物开采面临的科学与技术问题提出了建议。

     

    Abstract: The eventual aim of gas hydrate research is to develop and utilize the hydrate resource effectively, that is to achieve long-term exploitation safely and efficiently. Gas hydrate production test is just the first step towards this destination. In the last several decades, great achievements for gas hydrate exploitation method studies have been made by laboratory experiments and numerical simulations, which have laid a solid foundation for gas hydrate production test. In the permafrost areas, the gas hydrate production tests were carried out by the US, Japan and Canada in the Mallik program at the Mackenzie Delta, and the U.S. in the North Slope of Alaska, respectively. The results provide some valuable experiences for gas production from marine gas hydrate. In 2013 and 2015, Japan and China carried out successfully the marine gas hydrate production tests in different sea areas respectively, suggesting landmark achievements in gas hydrate researches. It indicates that the study of gas hydrate exploitation technology has changed gradually from laboratory simulation to field practice. In this paper, we reviewed the principles and the experimental results for various gas hydrate exploitation methods, introduced briefly the numerical simulation methods and their progresses, discussed the key technology preparation required for gas hydrate production tests and the field practice effect. We also discussed the limitation and challenges faced by each method. Some advices were presented on the science and technology issues of gas production of marine gas hydrate resources.

     

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