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Dynamic adaptive mesh optimisation for immiscible viscous fingering

机译:不混溶粘性手术的动态自适应网格优化

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摘要

Immiscible fingering is challenging to model since it requires a very fine mesh for the numerical method to capture the interaction of the shock front with the capillary pressure. This can result in computationally intensive simulations if a fixed mesh is used. We apply a higher order conservative dynamic adaptive mesh optimisation (DAMO) technique, to model immiscible viscous fingering in porous media. We show that the approach accurately captures the development and growth of the interfacial instability. Convergence is demonstrated under grid refinement with capillary pressure for both a fixed unstructured mesh and with DAMO. Using DAMO leads to significantly reduced computational cost compared to the equivalent fixed mesh simulations. We also present the late-time response of viscous fingers through numerical examples in a 2D rectangular domain and in a 3D cylindrical geometry. Both problems are computationally challenging in the absence of DAMO. The dynamic adaptive problem requires up to 36 times fewer elements than the prohibitively expensive fixed mesh solution, with the computational cost reduced accordingly.
机译:不混溶的指法是对模型挑战,因为它需要一个非常细的网格,以便数值方法捕获冲击前与毛细管压力的相互作用。如果使用固定网格,这可能导致计算密集的模拟。我们应用了更高阶保守的动态自适应网格优化(DAMO)技术,以模型在多孔介质中模拟不混溶的粘性手指。我们表明该方法准确地捕获了界面不稳定的发展和增长。在网格细化下对毛细管压力进行了展示,用于固定的非结构化网和DAMO。与等效的固定网格模拟相比,使用Damo导致计算成本显着降低。我们还通过2D矩形域和3D圆柱几何中的数值示例呈现粘性手指的后续时间响应。在没有Damo的情况下,这两个问题都是在计算上挑战。动态自适应问题需要多达36倍的元素,而不是昂贵的固定网格解决方案,计算成本相应地减少。

著录项

  • 来源
    《Computational Geosciences》 |2020年第3期|1221-1237|共17页
  • 作者单位

    Novel Reservoir Modelling and Simulation Group Department of Earth Science and Engineering Imperial College London Prince Consort Road London SW7 2BP UK;

    Novel Reservoir Modelling and Simulation Group Department of Earth Science and Engineering Imperial College London Prince Consort Road London SW7 2BP UK;

    Novel Reservoir Modelling and Simulation Group Department of Earth Science and Engineering Imperial College London Prince Consort Road London SW7 2BP UK;

    Novel Reservoir Modelling and Simulation Group Department of Earth Science and Engineering Imperial College London Prince Consort Road London SW7 2BP UK;

    Novel Reservoir Modelling and Simulation Group Department of Earth Science and Engineering Imperial College London Prince Consort Road London SW7 2BP UK;

    Novel Reservoir Modelling and Simulation Group Department of Earth Science and Engineering Imperial College London Prince Consort Road London SW7 2BP UK;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Immiscible viscous fingering; Dynamic adaptive mesh optimisation; Double control volume finite element method;

    机译:不混溶的粘性手指;动态自适应网格优化;双控制量有限元方法;

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