首页> 外文会议>European Conference on the Mathematics of Oil Recovery >An Efficient Fully-implicit High-resolution MFD-MUSCL Method for Two-phase Flow with Gravity in Discrete Fractured Media
【24h】

An Efficient Fully-implicit High-resolution MFD-MUSCL Method for Two-phase Flow with Gravity in Discrete Fractured Media

机译:一种高效的完全隐式高分辨率MFD-MUFD-MUSCL方法,用于双相流动,具有离散裂缝介质的重力

获取原文

摘要

Standard reservoir simulation schemes employ single-point upstream weighting for approximation of the convective fluxes when multiple phases or components are present. These schemes are only first-order and give a poor approximation and induce high viscosity effect. A second-order scheme provides a better approximation and manages to reduce the viscous smoothing effect in the vicinity of the shocks. In reservoir simulation practice, implicit discretisations capable of taking large time steps are preferred in practical computations. However, assembling and solving a large nonlinear system is often very expensive, even for a simple first-order method, and using a higher-order spatial discretisation introduces extra couplings and increases the nonlinearity of the discretised equations. It has been shown that the strong nonlinearity as well as the lack of continuous differentiability in numerical flux function and flux limiter can cause serious nonlinear convergence problem Cell-centered finite-volume (CCFV) discretizations may offer several attractive features, especially for the fluid flow in discrete fractured media. The objectives of this work are to develop a novel cell-centered multislope MUSCL method and an adaptive limiting strategy that have improved computational efficiency, smoothness properties, and accuracy The reconstruction scheme interpolates the required values at the edge centroids in a more straightforward and effective way by making better use of the triangular mesh geometry. Because optimal second-order accuracy can be reached at the edge centroids, the numerical diffusion caused by mesh skewness is also significantly reduced. An improved gradually-switching piecewise-linear flux-limiter is introduced according to mesh non-uniformity in order to prevent spurious oscillations. The developed smooth flux-limiter can achieve high accuracy without degrading nonlinear convergence behavior. For the discretization of pressure and Darcy velocities, a mimetic finite difference method that provides flux-continuity and an accurate total velocity field is used The developed fully-coupled MFD-MUSCL CCFV framework is adapted to accommodate a lower-dimensional discrete fracture-matrix model. Several numerical tests with discrete fractured system are carried out to demonstrate the efficiency and robustness of the numerical model. The results show that the high-order MUSCL method effectively reduces numerical diffusion, leading to improved resolution of saturation fronts compared with the first-order method In addition, it is shown that the developed multislope scheme and adaptive flux limiter exhibit superior nonlinear convergence compared with other alternatives.
机译:标准储存器仿真方案采用单点上游加权,以便在存在多个阶段或组分时近似对流助熔剂。这些方案仅是一阶并给出差的近似并诱导高粘度效应。二阶方案提供更好的近似和管理,以减少冲击附近的粘性平滑效果。在储层模拟实践中,在实际计算中,能够在实际计算中获得大时间步骤的隐式拆分。然而,装配和解决较大的非线性系统往往非常昂贵,即使是简单的一阶方法,以及使用更高阶的空间离散化引入了额外的联接件,并增加了离散化方程的非线性。已经表明,强的非线性以及数值通量函数和通量限制器中缺乏持续可差异性可能导致严重的非线性收敛问题,以细胞为中心的有限体积(CCFV)离散化可以提供几种有吸引力的特征,特别是对于流体流动在离散的裂缝媒体中。这项工作的目标是开发一种新颖的细胞中心多光栅Muscl方法和自适应限制策略,具有改善的计算效率,平滑性,并且精确度重建方案以更直接和有效的方式在边缘质心的内容中插值通过更好地利用三角网格几何形状。由于可以在边缘质心达到最佳的二阶精度,所以由网状偏斜导致的数值扩散也显着降低。根据网格不均匀性引入改进的逐渐切换分段 - 线性通量限制器,以防止杂散振荡。开发的平滑通量限制器可以在不降低非线性收敛行为的情况下实现高精度。为的压力离散化和达西速度,模拟物有限差分法,可提供通量连续性和精确的总速度字段用于所开发的全耦合MFD-MUSCL CCFV框架适于容纳下部维离散断裂矩阵模型。进行了几种具有离散裂缝系统的数值测试以证明数值模型的效率和稳健性。结果表明,高阶MUSCL方法有效地降低了数值扩散,导致饱和前峰值的分辨率与一阶方法相比,表明,与...相比,开发的多光栅方案和自适应通量限制器表现出优异的非线性收敛性其他替代方案。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号