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首页> 外文期刊>SPE Reservoir Evaluation & Engineering >Authors' Reply to Discussion of Interrelationship of Temperature and Wettability on the Relative Permeability of Heavy Oil in Diatomaceous Rocks
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Authors' Reply to Discussion of Interrelationship of Temperature and Wettability on the Relative Permeability of Heavy Oil in Diatomaceous Rocks

机译:作者对硅藻岩中重油相对渗透率的温度和润湿性相互关系的讨论的答复

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Dietrich's discussion is wide ranging. We agree that oil recovery from diatomite rocks is influenced by a variety of mechanisms, that compaction plays a role, and that more work in the area of recovery mechanisms and their representation within a reservoir simulator is warranted. His critique of our work, however, incorrectly summarizes our experimental procedures and it misrepresents the importance that we attribute to hot-water imbibition in relation to the other mechanisms that contribute to thermal oil recovery. His discussion of the simulation of field-scale recovery processes does not appear to acknowledge the need for upscaling or the inherent nonuniqueness present in history-match results. Our work highlights the role of fines detachment as well as silica and mineral dissolution combined with compressive stress (Schembre et al. 2006; Ikeda et al. 2007; Ross et al. 2008). We have found that rock wettability evolves favorably to a more water-wet state with elevated temperature. This change in wettability contributes positively to recovery.
机译:Dietrich的讨论范围很广。我们同意,从硅藻土岩石中采油受多种机制的影响,压实起着作用,并且在采油机理及其在油藏模拟器中的代表作用方面,需要做更多的工作。然而,他对我们工作的批评错误地概括了我们的实验程序,并且歪曲了我们归因于热水吸收与其他有助于热油采收的机制的重要性。他对现场规模恢复过程的模拟的讨论似乎并未认识到需要进行规模升级或历史匹配结果中存在固有的非唯一性。我们的工作强调了细粒分离以及二氧化硅和矿物溶解与压应力相结合的作用(Schembre等,2006; Ikeda等,2007; Ross等,2008)。我们发现,随着温度的升高,岩石的可湿性有利地演变为更湿的状态。润湿性的这种变化有利于恢复。

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