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Injection of seawater and mixtures with produced water into North Sea chalk formation:Impact of fluid-rock interactions on wettability and scale formation

机译:向北海白垩岩层中注入海水和产出水混合物:流体-岩石相互作用对润湿性和结垢的影响

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Seawater has been injected into high temperature and natural fractured North Sea chalk reservoirs to improve oil recovery with great success.Previous studies have shown that seawater will improve the water wetness and cause enhanced compaction of the matrix.The composition of the produced water will be quite similar to initial formation water at the start of the water injection.The formation water contains various amounts of divalent cations like Mg~(2+),Ca~(2+),Sr~(2+),and Ba~(2+).Later on,the composition will change due to the interaction between seawater and the chalk formation and some mixing with formation water.The fluid-rock interaction will involve dissolution of CaCO3,substitution of Ca~(2+)by Mg~(2+)at the chalk surface,precipitation of CaSO4,SrSO4 and BaSO4 depending on the reservoir temperature.Because of environmental reasons,it is desirable to re-inject produced water together with seawater.In the forthcoming research,we will study experimentally the effect of this re-injection on oil recovery and chalk compaction by using mixtures of produced water and seawater as injection fluid.Based on model studies using the OLI software package,the compatibility of mixtures of produced water and seawater has been studied at different temperatures by looking at the precipitation of CaSO4,SrSO4 and BaSO4.Also the impact of changes in the concentrations of Ca~(2+)and Mg~(2+)due to surface substitution is modelled.The results are discussed in terms of possible scale formation in the producer and injector.In addition,actual chemical equilibrium reactions in the chalk matrix are discussed in relation to variation in temperature during continuous injection of seawater.Special focus is made on wettability modification,irreversible thermodynamics,and impact on the mechanical strength of the chalk matrix.
机译:海水已被注入高温和天然裂缝的北海白垩岩储层中以提高采收率并取得了巨大成功,先前的研究表明海水将改善水的湿润度并增强基质的致密性,产出水的组成将相当丰富。类似于注水开始时的初始地层水。地层水包含各种量的二价阳离子,例如Mg〜(2 +),Ca〜(2 +),Sr〜(2+)和Ba〜(2+ )。后来,由于海水与白垩岩层之间的相互作用以及与地层水的某些混合作用,其成分会发生变化。液-岩相互作用将涉及CaCO3的溶解,Mg〜(2取代Ca〜(2+)。 +)在白垩表面,根据储层温度沉淀CaSO4,SrSO4和BaSO4。由于环境原因,最好将注入的水与海水一起注入。在接下来的研究中,我们将通过实验研究重新注入通过使用采出水和海水的混合物作为注入液来进行采油和白垩压实的工作。基于使用OLI软件包进行的模型研究,通过观察沉淀物的沉淀,研究了采出水和海水的混合物在不同温度下的相容性。还模拟了Ca〜(2+)和Mg〜(2+)的浓度变化对由于表面取代而产生的影响的影响。此外,还讨论了在连续注入海水过程中白垩基质中的实际化学平衡反应与温度变化的关系。特别着重于润湿性的改变,不可逆的热力学以及对白垩基质的机械强度的影响。

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