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首页> 外文期刊>Energy & fuels >Application of Low-Field Nuclear Magnetic Resonance (LFISIMR) in Characterizing the Dissociation of Gas Hydrate in a Porous Media
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Application of Low-Field Nuclear Magnetic Resonance (LFISIMR) in Characterizing the Dissociation of Gas Hydrate in a Porous Media

机译:低场核磁共振(LFISIMR)在多孔介质中的气体水合物解离

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摘要

Clear understandings of the dissociation behaviors and characteristics of a gas hydrate are essential for the exploitation of hydrate-bearing reservoirs. To study the dissociation characteristics of a gas hydrate in porous media, measurements using the low-field nuclear magnetic resonance (LFNMR) method on three different sand samples are conducted in this work. The changes of pore radius and phase saturation during the dissociation are determined based on the transverse relaxation time (iT _(2)) spectra. The fractal dimension is employed to depict the distributions of pore spaces occupied by water in the media, which shows a decreasing function with the decreasing hydrate saturation. Predictions of water permeability during the hydrate dissociation are comparably conducted using a fractal model and the widely used Schlumberger-Doll Research model. The fractal model performs better in showing the influences of pore-structure factors on the water permeability. The changes of specific reaction surface areas during the dissociation are estimated and preliminarily analyzed based on the results of LFNMR measurements. Results in this work may provide valuable insights for the related researches including the mechanical, acoustic, and electrical properties of the hydrate-bearing sediments.
机译:清晰的解离行为和天然气水合物的特性对于利用水合物储存器是必不可少的。为了研究多孔介质中的气体水合物的解离特性,在这项工作中进行了在三种不同的沙子样品上使用低场核磁共振(LFNMR)方法的测量。在解离期间的孔半径和相饱和的变化基于横向弛豫时间( T_(2))光谱来确定。采用分形尺寸来描绘介质中水中占用的孔隙空间的分布,其表示具有降低水合物饱和度的函数的降低。利用分形模型和广泛使用的斯洛姆伯格 - 娃娃研究模型相当进行水合物解离过程中的水渗透性预测。分形模型表现出孔隙结构因素对水渗透性的影响。在解离过程中的变化是基于LFNMR测量结果的估计和预先分析的。这项工作的结果可以为相关研究提供有价值的见解,包括水合物沉积物的机械,声学和电性能。

著录项

  • 来源
    《Energy & fuels》 |2021年第3期|2174-2182|共9页
  • 作者单位

    The Key Laboratory of Gas Hydrate Ministry of Natural Resources Qingdao Institute of Marine Geology|Laboratory for Marine Mineral Resources Pilot National Laboratory for Marine Science and Technology;

    The Key Laboratory of Gas Hydrate Ministry of Natural Resources Qingdao Institute of Marine Geology|Laboratory for Marine Mineral Resources Pilot National Laboratory for Marine Science and Technology;

    Institute of Unconventional Oil and Gas Science and Technology Research China University of Petroleum;

    Faculty of Engineering China University of Geosciences;

    Faculty of Engineering China University of Geosciences;

    The Key Laboratory of Gas Hydrate Ministry of Natural Resources Qingdao Institute of Marine Geology|Laboratory for Marine Mineral Resources Pilot National Laboratory for Marine Science and Technology;

    The Key Laboratory of Gas Hydrate Ministry of Natural Resources Qingdao Institute of Marine Geology|Laboratory for Marine Mineral Resources Pilot National Laboratory for Marine Science and Technology;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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