不同渗透率和孔喉条件下泡沫流体的特性及调驱机理
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胡渤(1973—),男,陕西宝鸡人,高级工程师,硕士,从事油田开发工作。联系电话:13954609972,E-mail:hubo755.slyt@sinopec.com。

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国家科技重大专项“高温高盐油田化学驱提高采收率技术”(2016ZX05011-003)。


Property of foam fluid and its mechanism of profile control and displacement in the reservoirs with different permeabilities and pore-throats
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    摘要:

    利用玻璃微观刻蚀模型和填砂岩心模型,考察了泡沫流体在不同渗透率和孔喉条件下的可入性、稳定性和再生性,研究了泡沫流体在不同渗透率条件下的微观调驱机理。泡沫流体在不同渗透率和孔喉条件下存在最低注入压力;渗透率越大泡沫流体的稳定性越好;泡沫流体具有较好的再生性,再生性与孔喉大小、孔喉比和孔隙配位数密切相关;泡沫流体在不同的孔喉中可通过洗油作用和调堵作用提高采收率,但贡献率不同,在高渗透率大孔喉中以调堵作用为主,在低渗透率较小孔喉中以洗油作用为主,并认为泡沫流体在改善地层非均质性方面的应用将会成为今后油田化学研究的重要方向之一。

    Abstract:

    Accessibility,stability and regeneration of the foam in various permeabilities and pore-throats were studied using etched glass micro-model and sand pack core model. Microscopic profile control and displacement mechanism under different permeabilities were studied. The foam has the lowest injection pressure. Foam stability gets better in high permeability layers;regeneration of foam is closely related to pore-throat size,pore-throat ratio and pore coordination number;oil washing and plugging by profile control of the foam in various pore-throats may enhance oil recovery with different contribution ratios. In high permeability and large pore-throat layers,the enhancement of recovery relies on plugging by profile control;while in low permeability and small pore-throat layers,oil washing is the main function. In the future,application of the foam to reservoir heterogeneity modification will be the research direction of oilfield chemistry.

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胡渤.不同渗透率和孔喉条件下泡沫流体的特性及调驱机理[J].油气地质与采收率,2016,23(4):70~75

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  • 在线发布日期: 2016-10-11