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首页> 外文期刊>International Journal of Greenhouse Gas Control >Flow regime analysis for geologic CO2 sequestration and other subsurface fluid injections
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Flow regime analysis for geologic CO2 sequestration and other subsurface fluid injections

机译:地质二氧化碳封存和其他地下流体注入的流态分析

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Carbon dioxide (CO2) injection into a confined saline aquifer may be modeled as an axisymmetric two-phase flow problem. Assuming the CO2 and brine segregate quickly in the vertical direction due to strong buoyancy, and neglecting capillary pressure and miscibility, the lubrication approximation leads to a one-dimensional nonlinear advection-diffusion equation that describes the evolution of the sharp CO2-brine interface. The interface evolution is driven by two forces: the force from fluid injection (the lateral pressure gradient due to injection), and buoyancy. Analytical solutions can be derived when one of the two forces is dominant. The solutions depend on the viscosity ratio (M) between the displaced and injected fluids, and a buoyancy parameter (Gamma) that measures the relative importance of buoyancy compared to the driving force from injection. Different combinations of these two parameters give different forms of the solutions. But for all the solutions, the radius of the lateral spreading of the injected fluid follows,r alpha t(1/2) with the proportionality coefficient differing for the different solutions. In this paper, we identify the kinds of solutions appropriate for practical CO2 injection projects as well as other subsurface fluid injection applications. We use data from eight CO2 injection projects, twenty-four acid gas injection projects, two liquid waste disposal projects, and one CO2-WAG enhanced oil recovery project. The solutions provide guidance for the expected behavior of fluid spreading under the different injection operations while providing general insights into overall fluid flow behavior. (C) 2016 Elsevier Ltd. All rights reserved.
机译:可以将二氧化碳(CO2)注入密闭盐水层中的过程建模为轴对称两相流问题。假设由于强浮力,而CO2和盐水在垂直方向上迅速分离,并且忽略了毛细管压力和可混溶性,则润滑近似会导致一维非线性对流扩散方程,该方程描述了急剧的CO2卤水界面的演化。界面演化由两个力驱动:来自流体注入的力(由于注入引起的侧向压力梯度)和浮力。当两个力之一占主导时,可以得出解析解。解决方案取决于驱替液和注入液之间的粘度比(M),以及测量浮力与注入驱动力相比的相对重要性的浮力参数(Gamma)。这两个参数的不同组合给出了不同形式的解。但是对于所有解,注入流体的横向扩散半径遵循r alpha t(1/2),比例系数对于不同解来说是不同的。在本文中,我们确定了适合实际CO2注入项目以及其他地下流体注入应用的解决方案。我们使用来自八个CO2注入项目,二十四个酸性气体注入项目,两个液体废物处理项目和一个CO2-WAG强化采油项目的数据。这些解决方案为在不同注入操作下流体扩散的预期行为提供了指导,同时提供了对整体流体流动行为的一般了解。 (C)2016 Elsevier Ltd.保留所有权利。

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