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Accelerating the convergence of coupled geomechanical-reservoir simulations

机译:加快地质力学-储层耦合模拟的收敛速度

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摘要

The pressure variations during the production of petroleum reservoir induce stress changes in and around the reservoir. Such changes of the stress state can induce marked deformation of geological structures for stress sensitive reservoirs as chalk or unconsolidated sand reservoirs. The compaction of those reservoirs during depletion affects the pressure field and so the reservoir productivity. Therefore, the evaluation of the geomechanical effects requires to solve in a coupling way the geomechanical problem and the reservoir multiphase fluid flow problem. In this paper, we formulate the coupled geomechanical-reservoir problem as a non-linear fixed point problem and improve the resolution of the coupling problem by comparing in terms of robustness and convergence different algorithms. We study two accelerated algorithms which are much more robust and faster than the conventional staggered algorithm and we conclude that they should be used for the iterative resolution of coupled reservoir-geomechanical problem.
机译:石油储层生产过程中的压力变化会引起储层内部和周围的应力变化。应力状态的这种变化会导致应力敏感型油藏(如白垩或非固结砂岩油藏)的地质结构发生明显变形。这些储层在枯竭过程中的压实会影响压力场,从而影响储层的生产率。因此,对地质力学效应的评估需要以耦合的方式解决地质力学问题和储层多相流体流动问题。在本文中,我们将耦合的岩土力学-水库问题公式化为非线性定点问题,并通过比较鲁棒性和收敛性不同的算法来提高耦合问题的分辨率。我们研究了两种加速算法,它们比常规的交错算法更健壮和更快,并且得出结论,应该将它们用于耦合储层-地质力学问题的迭代求解。

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