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A global implicit solver for miscible reactive multiphase multicomponent flow in porous media

机译:多孔介质中混溶的反应性多相多组分流的全局隐式求解器

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We present a numerical framework for efficiently simulating partially miscible two-phase flow with multicomponent reactive transport in porous media using the global implicit approach. The mathematical model consists of coupled and nonlinear partial differential equations, ordinary differential equations, and algebraic equations. Our approach is based on a model-preserving reformulation using the reduction scheme of Krautle and Knabner (Water Resour. Res. 43(3), 2007), Hoffmann et al. (Comput. Geosci. 16(4):1081-1099, 2012) to transform the system. Moreover, a nonlinear, implicitly defined resolution function to reduce its size is employed. By choosing persistent primary variables and using a complementarity approach, mineral reactions and the local appearance and disappearance of the gas phase can be handled without a discontinuous switch of primary variables. In each time step of the Euler-implicit time stepping scheme, the discrete nonlinear systems are solved using the Semismooth Newton method for linearization using the global implicit approach. Thus, we obtain an efficient, robust, and stable simulation method allowing for large time steps and avoiding the potential drawbacks of splitting approaches.
机译:我们提出了一个数值框架,可以使用全局隐式方法有效地模拟多孔介质中具有多组分反应输运的部分可混溶的两相流。该数学模型由耦合和非线性偏微分方程,常微分方程和代数方程组成。我们的方法是基于使用Krautle和Knabner的归约方案的模型保留重构(Water Resour。Res。43(3),2007),Hoffmann等。 (Comput.Geosci.16(4):1081-1099,2012)来转换系统。此外,采用了非线性的,隐式定义的分辨率函数来减小其大小。通过选择持久性主变量并使用互补方法,可以在不中断主变量的情况下处理矿物反应以及气相的局部出现和消失。在欧拉隐式时间步长方案的每个时间步中,使用半光滑牛顿法使用全局隐式方法求解离散非线性系统。因此,我们获得了一种高效,鲁棒和稳定的仿真方法,该方法允许较长的时间步长并避免了拆分方法的潜在缺点。

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