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An a posteriori-based, fully adaptive algorithm with adaptive stopping criteria and mesh refinement for thermal multiphase compositional flows in porous media

机译:基于后验的完全自适应算法,具有自适应停止准则和网格细化,用于多孔介质中的热多相成分流

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In this work we develop an a posteriori-based adaptive algorithm for thermal multiphase compositional flows in porous media. The key ingredients are fully computable a posteriori error estimates, bounding the dual norm of the residual supplemented by a nonconformity evaluation term. The theory hinges on assumptions that allow the application to variety of discretization methods. The estimators are then elaborated to estimate separately the space, time, linearization, and algebraic errors. This additional information is used to formulate a fully adaptive algorithm including adaptive stopping criteria for iterative solvers as well as refinement/derefinement criteria for both the time step and the mesh size. Numerical validation is provided on an industrial case study in the context of oil-recovery based on the steam-assisted gravity drainage procedure. Implicit cell-centered finite volumes with phase-upwind and two-point discretization of the diffusive fluxes are considered. It is shown that significant gains in computational cost can be achieved in this example, without hindering the quality of the results as measured by quantities of engineering interest.
机译:在这项工作中,我们为多孔介质中的热多相成分流开发了一种基于后验的自适应算法。关键成分是完全可计算的后验误差估计值,以不合格评估术语为补充的残差对偶范数为界。该理论基于允许应用到各种离散化方法的假设。然后,对估计器进行详细说明,以分别估计空间,时间,线性化和代数误差。此附加信息用于制定一种完全自适应的算法,包括用于迭代求解器的自适应停止标准以及针对时间步长和网格大小的优化/取消优化标准。在基于蒸汽辅助重力排水程序的采油背景下的工业案例研究中提供了数值验证。考虑了具有相上风的隐式单元中心有限体积和扩散通量的两点离散化。结果表明,在该示例中可以实现计算成本的显着提高,而不会妨碍按工程量衡量的结果的质量。

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