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Dynamic mesh optimisation for geothermal reservoir modelling

机译:地热储层建模动态网格优化

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摘要

Modelling geothermal reservoirs is challenging due to the large domain and wide range of length- and time-scales of interest. Attempting to represent all scales using a fixed computational mesh can be very computationally expensive. Application of dynamic mesh optimisation in other fields of computational fluid dynamics has revolutionised the accuracy and cost of numerical simulations. Here we present a new approach for modelling geothermal reservoirs based on unstructured meshes with dynamic mesh optimisation. The resolution of the mesh varies during a simulation, to minimize an error metric for solution fields of interest such as temperature and pressure. Efficient application of dynamic mesh optimisation in complex subsurface reservoirs requires a new approach to represent geologic heterogeneity and we use parametric spline surfaces to represent key geological features such as faults and lithology boundaries. The resulting 3D surface-based models are mesh free; a mesh is created only when required for numerical computations. Dynamic mesh optimisation preserves the surfaces and hence geologic heterogeneity. The governing equations are discretised using a double control volume finite element method that ensures heat and mass are conserved and provides robust solutions on distorted meshes. We apply the new method to a series of test cases that model sedimentary geothermal reservoirs. We demonstrate that dynamic mesh optimisation yields significant performance gains, reducing run times by up to 8 times whilst capturing flow and heat transport with the same accuracy as fixed meshes.
机译:由于大域和广泛的感兴趣的长度和时间尺度,建模地热储层是挑战性的。尝试代表使用固定计算网格的所有尺度可以非常昂贵。动态网格优化在计算流体动力学的其他领域中的应用彻底改变了数值模拟的准确性和成本。在这里,我们提出了一种基于具有动态网格优化的非结构化网格建模地热库建模新方法。网格的分辨率在仿真期间变化,以最小化解决诸如温度和压力的溶液场的误差度量。在复杂的地下储层中的动态网格优化的高效应用需要一种新方法来代表地质异质性,我们使用参数样条曲面来表示诸如故障和岩性边界的关键地质特征。由此产生的3D基于表面的模型是自由网的;仅在数字计算所需时创建网状物。动态网格优化保留表面并因此是地质异质性。使用双控制体积有限元方法离散定控方程,该方法可确保热量和质量保存,并为扭曲网格提供鲁棒解决方案。我们将新方法应用于模型沉积地热储层的一系列测试用例。我们证明,动态网格优化产生了显着的性能增益,捕​​获流量和热传输的速度和热传输具有与固定网格相同的速度,从而减少8倍。

著录项

  • 来源
    《Geothermics》 |2021年第7期|102089.1-102089.13|共13页
  • 作者单位

    Imperial Coll London Novel Reservoir Modelling & Simulat Grp Dept Earth Sci & Engn London England;

    Imperial Coll London Novel Reservoir Modelling & Simulat Grp Dept Earth Sci & Engn London England;

    Imperial Coll London Novel Reservoir Modelling & Simulat Grp Dept Earth Sci & Engn London England;

    Imperial Coll London Novel Reservoir Modelling & Simulat Grp Dept Earth Sci & Engn London England;

    Imperial Coll London Novel Reservoir Modelling & Simulat Grp Dept Earth Sci & Engn London England;

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

    CV-FEM mixed formulation; Dynamic mesh optimisation; Porous media flow; Well modelling; Geothermal reservoir;

    机译:CV-FEM混合配方;动态网格优化;多孔介质流动;井建模;地热水库;

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