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Efficient reordered nonlinear Gauss-Seidel solvers with higher order for black-oil models

机译:针对黑油模型的高阶高效重排序非线性高斯-赛德尔求解器

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The fully implicit method is the most commonly used approach to solve black-oil problems in reservoir simulation. The method requires repeated linearization of large nonlinear systems and produces ill-conditioned linear systems. We present a strategy to reduce computational time that relies on two key ideas: (ⅰ) a sequential formulation that decouples flow and transport into separate subproblems, and (ⅱ) a highly efficient Gauss-Seidel solver for the transport problems. This solver uses intercell fluxes to reorder the grid cells according to their upstream neighbors, and groups cells that are mutually dependent because of counter-current flow into local clusters. The cells and local clusters can then be solved in sequence, starting from the inflow and moving gradually downstream, since each new cell or local cluster will only depend on upstream neighbors that have already been computed. Altogether, this gives optimal localization and control of the nonlinear solution process. This method has been successfully applied to real-field problems using the standard first-order finite volume discretization. Here, we extend the idea to first-order dG methods on fully unstructured grids. We also demonstrate proof of concept for the reordering idea by applying it to the full simulation model of the Nome oil field, using a prototype variant of the open-source OPM Flow simulator.
机译:完全隐式方法是解决油藏模拟中黑油问题的最常用方法。该方法需要对大型非线性系统进行重复线性化,并产生病态线性系统。我们提出了一个基于两个关键思想的减少计算时间的策略:(ⅰ)将流量和输运分离为单独的子问题的顺序公式,以及(ⅱ)输运问题的高效高斯-赛德尔求解器。该求解器使用单元间通量来根据网格单元的上游邻居对网格单元进行重新排序,并对由于相互逆流流入局部集群而相互依赖的单元进行分组。然后,从入库开始逐步向下游移动,可以依次求解单元格和局部簇,因为每个新的单元格或局部簇将仅取决于已经计算出的上游邻居。总之,这为非线性求解过程提供了最佳的定位和控制。使用标准的一阶有限体积离散化,该方法已成功应用于实际问题。在这里,我们将思想扩展到完全非结构化网格上的一阶dG方法。我们还使用开源OPM Flow模拟器的原型变体将其应用到Nome油田的完整模拟模型中,从而论证了重新排序概念的概念验证。

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