基于 Biot 多孔介质的非常规天然气迁移双孔隙表观渗透率模型

IF 2 3区 工程技术 Q3 MATERIALS SCIENCE, MULTIDISCIPLINARY
Bin Gu, Hongyuan Liu, Yiuwing Mai, Bing Wang
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引用次数: 0

摘要

针对非常规气藏中的有机孔隙和无机裂隙/裂缝,建立了与应力相关的渗透率模型,并将其模拟为双孔隙度的 Biot 多孔介质。进一步考虑了气体流动的动态效应和表面扩散等多种流动机制,得到了表观渗透率模型,以研究非常规天然气的迁移特征。与单一孔隙度储层的气体迁移相比,双孔隙度地层中裂隙的气体迁移能力很少发生变化,而有机孔隙的气体迁移能力则大大提高,因为当孔隙压力下降时,裂隙可承受较大的地质力学收缩变形。此外,储层的质量通量以裂隙的质量通量为主,由于有机孔隙与裂隙之间的相互作用,裂隙的质量通量峰值较低,但生产期比单孔隙储层的质量通量要长得多。通过参数分析,确定了对非常规储层质量通量有重大影响的关键因素。还从气体迁移能力和孔隙压力分布方面探讨了质量通量变化的原因。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Dual-Porosity Apparent Permeability Models of Unconventional Gas Migration Based on Biot’s Porous Media

Dual-Porosity Apparent Permeability Models of Unconventional Gas Migration Based on Biot’s Porous Media

Dual-Porosity Apparent Permeability Models of Unconventional Gas Migration Based on Biot’s Porous Media

Stress-dependent permeability models are developed for the organic pores and inorganic cleats/ fractures in unconventional gas reservoirs, which are modeled as Biot’s porous media of dual-porosity. Further considering multiple flow mechanisms such as dynamic effects of gas flow and surface diffusion, apparent permeability models are obtained to investigate the characteristics of unconventional gas migration. Compared to the gas transfer in single-porosity reservoirs, the gas migration ability of cleats in dual-porosity stratums rarely changes while that of organic pores is greatly improved because cleats sustain major geomechanical shrinkage deformation when the pore pressure drops. Further, the mass flux of reservoirs is dominated by the mass flux of cleats, which has a lower peak value, but a much longer production term than those in single-porosity reservoirs due to the interaction between organic pores and cleats. Parametric analysis is conducted to identify key factors significantly impacting mass flux in unconventional reservoirs. Reasons for the mass flux variation are also explored in terms of gas migration ability and pore pressure distribution.

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来源期刊
Acta Mechanica Solida Sinica
Acta Mechanica Solida Sinica 物理-材料科学:综合
CiteScore
3.80
自引率
9.10%
发文量
1088
审稿时长
9 months
期刊介绍: Acta Mechanica Solida Sinica aims to become the best journal of solid mechanics in China and a worldwide well-known one in the field of mechanics, by providing original, perspective and even breakthrough theories and methods for the research on solid mechanics. The Journal is devoted to the publication of research papers in English in all fields of solid-state mechanics and its related disciplines in science, technology and engineering, with a balanced coverage on analytical, experimental, numerical and applied investigations. Articles, Short Communications, Discussions on previously published papers, and invitation-based Reviews are published bimonthly. The maximum length of an article is 30 pages, including equations, figures and tables
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