四川盆地焦石坝地区龙马溪组页岩气不同传输类型的临界孔径与传输能力
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本文为国家科技重大专项“大型油气田及煤层气开发”(编号 2017ZX05035002)和国家自然科学基金项目(编号41872135、41802153)联合资助的成果。


Critical conditions and capabilities of shale gas diffusion and seepage types in the Longmaxi Formation in Jiaoshiba area, Sichuan basin
Author:
  • Wang Guozhen

    Wang Guozhen

    1) State Key Laboratory of Petroleum Resource and Prospecting, China University ofPetroleum (Beijing), Beijing 102249, China; 2) Unconventional Oil and Gas Science and Technology Research Institute, China University ofPetroleum(Beijing), Beijing 102249, China
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  • Jiang Zhenxue

    Jiang Zhenxue

    1) State Key Laboratory of Petroleum Resource and Prospecting, China University ofPetroleum (Beijing), Beijing 102249, China; 2) Unconventional Oil and Gas Science and Technology Research Institute, China University ofPetroleum(Beijing), Beijing 102249, China
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  • Tang Xianglu

    Tang Xianglu

    1) State Key Laboratory of Petroleum Resource and Prospecting, China University ofPetroleum (Beijing), Beijing 102249, China; 2) Unconventional Oil and Gas Science and Technology Research Institute, China University ofPetroleum(Beijing), Beijing 102249, China
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  • He Shijie

    He Shijie

    1) State Key Laboratory of Petroleum Resource and Prospecting, China University ofPetroleum (Beijing), Beijing 102249, China; 2) Unconventional Oil and Gas Science and Technology Research Institute, China University ofPetroleum(Beijing), Beijing 102249, China
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  • Wang Yuchao

    Wang Yuchao

    1) State Key Laboratory of Petroleum Resource and Prospecting, China University ofPetroleum (Beijing), Beijing 102249, China; 2) Unconventional Oil and Gas Science and Technology Research Institute, China University ofPetroleum(Beijing), Beijing 102249, China
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  • Chang Jiaqi

    Chang Jiaqi

    1) State Key Laboratory of Petroleum Resource and Prospecting, China University ofPetroleum (Beijing), Beijing 102249, China; 2) Unconventional Oil and Gas Science and Technology Research Institute, China University ofPetroleum(Beijing), Beijing 102249, China
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    摘要:

    页岩气的扩散和渗流是页岩气富集过程中非常重要的地质作用,在地层条件下页岩气以扩散和渗流形式在微—纳米孔隙网络中进行传输。本文以四川盆地焦石坝地区龙马溪组页岩气藏为研究对象,基于克努森数与气体吸附机理,明确了页岩气扩散和渗流的主要类型;进一步结合气体微观分子动力学模拟,明确了剖面上不同页岩气扩散和渗流类型的临界条件;基于达西公式与菲克公式基本物理定义,建立了扩散系数与渗透率的关系,结合焦石坝地区龙马溪组页岩不同孔径下孔隙体积权重,查明了页岩全孔径视测渗透率的分布特征。研究表明,页岩气在地下主要存在三种扩散与两种渗流形式,包括吸附气表面扩散、克努森扩散、菲克扩散、滑脱渗流和达西渗流,现今焦石坝地区 5 种扩散和渗流类型临界孔径依次为 1.2nm 、 1.6nm 、 25.0nm 、 225.0nm ,不同扩散和渗流形式对应的孔隙体积占比依次为15.3% 、 5.6% 、 60.7% 、 6.4% 、 12.0% ;宏孔主要提供了气体渗流空间、微孔与中孔主要提供了气体扩散空间,渗流传输能力约为扩散传输能力的 106倍。

    Abstract:

    Diffusion and seepage of shale gas are very important geological functions in the process of shale gas enrichment. Under formation conditions, shale gas is transported in the micronano pore network in the form of diffusion and seepage. This paper takes the shale gas reservoir of the Longmaxi Formation in the Jiaoshiba area of the Sichuan basin as the research object. Based on the Knudsen number and gas adsorption mechanism, the main types of shale gas diffusion and seepage are clarified. The critical conditions of different shale gas diffusion and seepage types on the profile were established, and based on the basic physical definitions of Darcys formula and Ficks formula, the relationship between diffusion coefficient and permeability was established. The pore volume weight is used to identify the distribution characteristics of shale fullpore apparent permeability. Studies have shown that shale gas mainly has three types of diffusion and two forms of seepage in the ground, including surface diffusion of adsorbed gas, Knudsen diffusion, Fick diffusion, slippage and Darcy seepage, of whichthere are currently five types in the Jiaoshiba area. The critical pore sizes of diffusion and seepage types are 1. 2 nm, 1. 6 nm, 25. 0 nm, and 225. 0 nm, respectively, and the proportion of pore volumes corresponding to different diffusion and seepage forms is 15. 3%, 5. 6%, 60. 7%, 6. 4%, and 12. 0%. Macropores mainly provides gas percolation space, micropores and mesopores mainly provide gas diffusion space, and the percolation transport capacity is about 106 times that of the diffusion transport capacity.

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王国臻,姜振学,唐相路,贺世杰,王昱超,常佳琦.2023.四川盆地焦石坝地区龙马溪组页岩气不同传输类型的临界孔径与传输能力[J].地质学报,97(1):210-220.
Wang Guozhen, Jiang Zhenxue, Tang Xianglu, He Shijie, Wang Yuchao, Chang Jiaqi.2023. Critical conditions and capabilities of shale gas diffusion and seepage types in the Longmaxi Formation in Jiaoshiba area, Sichuan basin[J]. Acta Geologica Sinica,97(1):210-220.

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  • 收稿日期:2021-12-30
  • 最后修改日期:2022-03-26
  • 录用日期:2022-03-30
  • 在线发布日期: 2023-02-06