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首页> 外文期刊>Journal of Petroleum Science & Engineering >A laboratory investigation of the factors controlling the filtration loss when drilling with colloidal gas aphron (CGA) fluids
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A laboratory investigation of the factors controlling the filtration loss when drilling with colloidal gas aphron (CGA) fluids

机译:对使用胶体汽油(CGA)流体进行钻井时控制过滤损失的因素进行实验室研究

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The colloidal gas aphron (CGA) drilling fluids are designed to minimize formation damage by blocking pores of the rock with microbubbles and reducing the filtration loss. In order to gain a better understanding of the factors controlling the pore blocking mechanisms of microbubbles, a set of core flooding experiments was conducted by using various CGA drilling fluid formulations. The differential pressure drop along the sand-pack was measured. Effects of CGA fluid composition, flow rates, type of reservoir saturating fluids, permeability and wettability on the resistance to CGA drilling fluid flow through porous media (i.e., pressure drop due to CGA fluid flow) have been investigated. An increasing resistance to flow of CGA drilling fluids through porous media was observed as more CGA fluid was injected. Results confirmed that CGA microbubble build-up across the pore structure could establish an effective seal for controlling filtration loss.
机译:胶体气瓶(CGA)钻井液旨在通过用微气泡堵塞岩石孔隙并减少过滤损失来最大程度降低地层损害。为了更好地了解控制微气泡的孔隙阻塞机制的因素,使用各种CGA钻井液配方进行了一系列岩心驱油实验。测量了沿沙堆的压差下降。已经研究了CGA流体成分,流速,储层饱和流体类型,渗透率和润湿性对CGA钻井液通过多孔介质的流动阻力(即由于CGA流体流动引起的压降)的影响。随着注入更多的CGA流体,人们观察到CGA钻井液通过多孔介质的阻力增加。结果证实,CGA在整个孔结构中形成的微气泡可以建立有效的密封来控制过滤损失。

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