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Small Core Flood Experiments for Foam EOR -Screening Surfactant Applications

机译:泡沫EOR -Screening表面活性剂应用的小核洪水实验

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Aqueous foams are a means of increasing the sweep efficiency of enhanced oil recovery processes. An understanding of how a foam behaves in the presence of oil is therefore of great importance when selecting suitable surfactants for EOR processes. The consensus is currently that the most reliable method for determining the foam behavior in the presence of oil is to inject foam through a rock core. Core flood tests, however, are typically carried out using large rock cores (e.g. diameter = 4 cm, length = 40 cm or longer), and hence foam flow tests can take days or weeks to achieve steady-state flow. In this study, we present the preliminary results for a core-flood system where the rock core is pen-sized (diameter = 1 cm, length = 17 cm). These small cores allow for short-duration foam flow tests, where steady-state flow is achieved in a few hours. Using this system, the foam quality/effective viscosity response curves can be plotted, both with and without oil in the system. These small size cores then enable rapid screening of surfactants and foam properties in different rocks and with different oils. Benefits and limitations of these small coreflood experiments are discussed.
机译:水性泡沫是增加增强的采油过程的扫描效率的方法。因此,了解在为EOR过程中选择合适的表面活性剂时,泡沫在油的存在中的表现是非常重要的。共识目前,最可靠的方法来确定油状物中的泡沫行为是通过岩石芯注射泡沫。然而,核心洪水测试通常使用大岩石芯(例如直径= 4cm,长度= 40cm或更长度)进行,因此泡沫流测试可能需要数天或数周以实现稳态流动。在这项研究中,我们向岩石芯的核心泛洪系统提供了初步结果,其中岩石芯是笔积(直径= 1cm,长度= 17厘米)。这些小芯允许短持续时间泡沫流测试,其中几个小时内实现稳态流动。使用该系统,可以在系统中绘制泡沫质量/有效粘度响应曲线。这些小尺寸核心,然后能够在不同岩石和不同的油中快速筛选表面活性剂和泡沫特性。讨论了这些小核心实验的益处和局限性。

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