Selective Crystallization - En Route to In-Situ Deep Conformance Control

Ali Binabdi, Subash Ayirala, Ahmed Gmira, T. Sølling
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Abstract

We have investigated the interfacial properties at a brine-hydrocarbon boundary with the prospect of understanding the crystallization process that takes place when certain electrolytes are present in the brine and when certain surfactants are present in the hydrocarbon phase. This was done in an optical force tensiometer setup with a so-called buoyant droplet configuration. It is only specific combinations (that is not all surfactants not all electrolytes) that form crystals and we aim at utilizing this specificity to form crystal plugs in particular sections of an oil reservoir, for example in zones with high flow that can then be reduced by the crystal plugs. The treatment can potentially be tailored based on the predominant acid-type in a mixture. The current study reveals several (at least three) different modes of crystal formation. The electrolyte-surfactant combination that gives rise to the most clear-cut formation of crystals directly at the interface is involving Zn2+ or Cu2+ and dodecanoic acid (C11H23COOH). Several of the systems under study appears to be forming crystals within the hydrocarbon phase and that these crystals more the likely are a result of the surfactant associated diffusive transfer of cations into the hydrocarbon phase. The next short-term goal is to induce crystals when the hydrocarbon phase is (potentially spiked) crude oil to tailor the discoveries towards the longer-term goal: In-situ deep conformance control field applications.
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选择性结晶-在原位深度一致性控制的过程中
我们研究了卤水-碳氢化合物边界处的界面性质,以期了解当卤水中存在某些电解质和碳氢化合物相中存在某些表面活性剂时发生的结晶过程。这是在一个光学力张力计装置中完成的,该装置具有所谓的浮力液滴结构。只有特定的组合(不是所有的表面活性剂,也不是所有的电解质)才能形成晶体,我们的目标是利用这种特异性在油藏的特定区域形成晶体塞,例如在高流量区域,然后可以通过晶体塞来减少。可以根据混合物中的主要酸类型来定制处理方法。目前的研究揭示了几种(至少三种)不同的晶体形成模式。电解液-表面活性剂的组合是Zn2+或Cu2+和十二烷酸(C11H23COOH)直接在界面上形成最明确的晶体。所研究的几个体系似乎在烃相内形成晶体,这些晶体更有可能是表面活性剂将阳离子扩散转移到烃相的结果。下一个短期目标是在油气相(可能出现尖刺的)原油中诱导出晶体,从而使发现符合长期目标:就地深层一致性控制油田的应用。
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