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蒋中明, 钟兵, 万发. 水封石油洞库污染物运移规律研究[J]. 岩土工程学报, 2023, 45(12): 2529-2536. DOI: 10.11779/CJGE20221211
引用本文: 蒋中明, 钟兵, 万发. 水封石油洞库污染物运移规律研究[J]. 岩土工程学报, 2023, 45(12): 2529-2536. DOI: 10.11779/CJGE20221211
JIANG Zhongming, ZHONG Bing, WAN Fa. Migration laws of pollutants in surrounding rock of underground oil storage caverns[J]. Chinese Journal of Geotechnical Engineering, 2023, 45(12): 2529-2536. DOI: 10.11779/CJGE20221211
Citation: JIANG Zhongming, ZHONG Bing, WAN Fa. Migration laws of pollutants in surrounding rock of underground oil storage caverns[J]. Chinese Journal of Geotechnical Engineering, 2023, 45(12): 2529-2536. DOI: 10.11779/CJGE20221211

水封石油洞库污染物运移规律研究

Migration laws of pollutants in surrounding rock of underground oil storage caverns

  • 摘要: 水封石油洞库储油可能造成地下水污染。明晰石油污染物在裂隙岩体中的运移规律是库区地下水污染防控的前提。为揭示石油污染物在洞周围岩地下水中的运移规律,基于裂隙-孔隙双重介质模型,采用数值模拟方法研究了石油中的特征污染物——苯的运移扩散过程,并分析了裂隙倾角、裂隙开度、基质渗透率和纵向弥散度对苯运移规律的影响。研究表明:储库正常运行50 a后,苯的迁移被限制在较小的范围内,不会到达水幕系统,也不会进入到地面表层下的水体中。在长期运行条件下,相邻洞周围岩中的污染晕可相互连通,并将引起相邻洞罐中油品污染物之间的交叉污染。苯的竖向污染距离对纵向弥散度和裂隙倾角大小敏感性强,而对裂隙开度和基质渗透率的敏感性较弱。洞室间岩柱中轴线上苯的最大浓度对裂隙倾角最为敏感,且随裂隙倾角和基质渗透率的增大而减小,随纵向弥散度和裂隙开度的增加而增大。

     

    Abstract: The groundwater near a cavern may be polluted during the operation period of oil storage. Understanding the migration laws of oil pollutants in fractured rock mass is the base of groundwater pollution prevention and control in reservoir areas. For the sake of revealing the migration laws of oil pollutants in surrounding rock of the caverns, the migration and diffusion processes of benzene are studied by using the numerical simulation method based on the fracture-pore dual-medium model. The effects of fracture inclination angle, fracture aperture, matrix permeability and longitudinal dispersivity on the migration of benzene are also analyzed. The research results show that the migration of benzene is limited in a small range after 50 years of oil storage in the caverns, and it does not go up to the water curtain system, nor access the water body near ground surface. Under the long-term operation of the caverns, the pollution halos of the adjacent caverns can connect with each other, which will lead to cross-contamination of oil pollutants in the adjacent caverns. The vertical pollution distance of benzene is sensitive to the longitudinal dispersivity and fracture inclination angle, but weakly sensitive to the fracture aperture and matrix permeability. The maximum concentration of benzene on the central axis of rock pillars between caverns is most sensitive to the fracture inclination angle, and it decreases with the increase of the fracture inclination angle and matrix permeability, but increases with the increase of the longitudinal dispersivity and fracture aperture.

     

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