首页> 外文会议>SPE Kingdom of Saudi Arabia Annual Technical Symposium and Exhibition >Waterflood Management Using Streamline-based Inter-well Flux Information and Classical Finite Volume Reservoir Simulation
【24h】

Waterflood Management Using Streamline-based Inter-well Flux Information and Classical Finite Volume Reservoir Simulation

机译:利用基于精简的井间通量信息和古典有限积储存仿真的水运管理

获取原文
获取外文期刊封面目录资料

摘要

In this work, we implement new software for improved waterflood management by combining classical finite volume reservoir simulation together with streamline tracing and corresponding inter- well flux evaluations to optimize waterflood performance. We show reduced water cut and improved oil recovery by using streamline-based flux information to adjust well rates, while retaining the advantages of rigorous finite volume simulation. We have introduced two basic modules here: a commercial reservoir simulator Eclipse and our own streamline tracing and waterflood management program. Waterflood simulation is performed for a certain time span until simulation is paused and the streamline tracing program is called to calculate inter-well fluxes and adjust new well rates for better waterflood performance. The simulation continues afterwards until the next tracing and adjustment point is reached. The two modules work iteratively. The streamline tracing program uses the classical Pollock’s tracing method. It is designed to trace streamlines on a compressible velocity field and a general corner point grid system with non- neighboring connections. The new injection rates are adjusted according to each well’s injection efficiency calculated from inter-well fluxes as proposed in previous works. Our waterflood management program successfully works cooperatively with the commercial simulator, with data transfer realized by making the simulator to output the velocity field and other information into restart files. Streamline tracing is performed successfully not only on simple geometry corner point grid cases, but also on heavily-faulted realistic reservoirs under waterflood. Streamline- based inter-well multi-phase fluxes are calculated, in which the injection efficiencies are derived accordingly. Injectors with higher efficiencies will receive more water from the source, according to the injection allocation algorithms and vice versa. After re-adjusting injection rates multiple times during the simulation, we typically observe a reduction in field water cut of up to 5% and an increase in oil recovery in our test cases. Inter-well flux information serves as effective diagnostic tools to identify injector-producer pairs with large amount of water cycling. All simulations conducted here are rigorously finite volume based, which takes into account the full physics of non-advective processes such as gravity and capillary effects.
机译:在这项工作中,我们通过将经典有限体积储存器模拟与流线跟踪和相应的间间通量评估相结合,实现新软件,以改善古典有限体积储存器模拟和相应的井间通量评估以优化水运性能。我们通过使用基于流线的助焊剂信息来调整井速率的降低的水切割和改善的采油,同时保留了严格的有限体积模拟的优点。我们在此推出了两个基本模块:商用水库模拟器Eclipse和我们自己的简化跟踪和水运管理计划。在暂停仿真之前进行水灌木模拟,直到暂停仿真,并调用流线程追踪程序以计算井间通量,并调整新的井率以获得更好的水泡性能。之后,模拟继续,直到达到下一个跟踪和调整点。两个模块迭代地工作。 Streamline跟踪程序使用经典的Collock的跟踪方法。它旨在在可压缩速度场和具有非相邻连接的一般角点网格系统上追踪流线。根据以前作品中提出的井间通量计算的每个孔的注射效率调整新的注射率。我们的水灌木管理计划通过商业模拟器协同工作,通过制作模拟器输出速度字段和其他信息来实现数据传输。简化跟踪不仅在简单的几何角点网格盒上成功地执行,而且还在水运下的沉重断层逼真水库上进行。计算基于井间的多相助熔剂,其中进入效率相应地得出。根据注射分配算法,具有较高效率的喷射器将从源中获得更多水,反之亦然。在模拟期间多次重新调整注射率之后,我们通常观察降低田间水降低高达5%,在测试用例中增加了储油。井间通量信息用作识别具有大量水循环的注射器制作的有效诊断工具。这里进行的所有模拟都是严格的有限体积,这考虑了非平流过程的全部物理学,如重力和毛细血管效应。

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