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首页> 外文期刊>Journal of Petroleum Science & Engineering >Comparison of Darcy's law and invasion percolation simulations with buoyancy-driven CO2-brine multiphase flow in a heterogeneous sandstone core
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Comparison of Darcy's law and invasion percolation simulations with buoyancy-driven CO2-brine multiphase flow in a heterogeneous sandstone core

机译:达西法律和侵袭渗流模拟与异构砂岩核心浮力驱动的二氧化碳多相流动的侵袭思路

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In CO2 storage scenarios, CO2 flow is dominated by gravity and capillary forces rather than viscous forces over much of the storage space. It is unclear what is the most efficient and effective method to model CO2 flow under these conditions standard continuum Darcy-based flow models or invasion percolation models. We perform experiments using high-pressure liquid CO2 injection into a vertically-aligned heterogeneous Boise sandstone core (30 cm long, 7 cm diameter). Effluent measurements assure that the flow is gravity dominated, and the resulting invasion pattern is measured using X-ray computed tomography (CT). Before the flow experiment is performed, a porosity map of the core is obtained from the CT data and is used as an input to both an invasion percolation model and a Darcy-based flow model. Each simulation matched different features of the data, but neither produced a comprehensive match. The results highlight the strengths and weaknesses of each type of model. We suggest possibilities of integrating the techniques to improve predictions of buoyancy driven flow in heterogeneous media.
机译:在二氧化碳存储场景中,CO2流量由重力和毛细管力占主导地位,而不是在大部分存储空间中的粘性力。目前尚不清楚在这些条件下模拟CO2流量的最有效和有效的方法是什么标准连续达西基流量模型或侵入渗流模型。我们使用高压液体CO 2注入到垂直对齐的非均相毛细砂岩芯(30cm长,7cm直径)中进行实验。流出物测量确保流量是重力占主导地位,并且使用X射线计算机断层扫描(CT)测量所得到的侵入图案。在进行流动实验之前,从CT数据获得核心的孔隙率图,用作侵入渗透模型和基于达西的流量模型的输入。每个模拟符合数据的不同特征,但既不产生全面的匹配。结果突出了每种类型的模型的优势和缺点。我们建议整合技术以改善异构介质中浮力驱动流动的预测。

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