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Waterflood Management Using Hybrid Approach of Streamline-Based Interwell Flux Information and Finite Volume Reservoir Simulation

机译:基于流线的井间通量信息和有限体积油藏模拟混合方法的注水管理

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In this work, we implement new software for improved waterflood management by combining classical finite volume reservoir simulation together with streamline tracing and corresponding interwell flux evaluations to optimize waterflood performance. We have introduced two basic modules here a commercial reservoir simulator 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 interwell 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 is designed to trace streamlines on a compressible velocity field and a general corner point grid system with nonneighboring connections. The new injection rates are adjusted according to each well's injection efficiency calculated from interwell multi-phase fluxes. Streamline tracing is performed successfully not only on simple geometry corner point grid cases, but also on heavily faulted realistic reservoirs under waterflood. After readjusting 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. Interwell 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 nonadvective processes such as gravity and capillary effects. In conclusion, we have implemented a streamline‐based waterflood management program which works iteratively and cooperatively with a commercial reservoir simulator, without switching to streamline simulation. It provides an effective solution for improving oil recovery in brown fields by combining the rigorous mathematical nature of finite volume simulation and the power of streamline-based flood management.
机译:在这项工作中,我们通过结合经典的有限体积油藏模拟,流线跟踪和相应的井间通量评估来优化注水性能,从而实施用于改善注水管理的新软件。我们在这里介绍了两个基本模块,即商用油藏模拟器以及我们自己的流线跟踪和注水管理程序。在一定时间范围内执行注水模拟,直到模拟被暂停为止,并调用流线跟踪程序来计算井间通量并调整新的井速以获得更好的注水性能。此后继续模拟,直到到达下一个跟踪和调整点。这两个模块迭代地工作。流线跟踪程序旨在跟踪可压缩速度场上的流线和具有不相邻连接的通用角点网格系统。根据从井间多相通量计算出的每口井的注入效率,调整新的注入速率。流线追踪不仅可以在简单的几何角点网格案例中成功完成,而且还可以在注水条件下的严重断层现实水库中成功进行。在模拟过程中多次调整注入速率后,在我们的测试案例中,我们通常会观察到油田含水率降低最多5%,油采收率提高。井间通量信息可作为有效的诊断工具,以识别出水循环频繁的喷油嘴—生产者对。此处进行的所有模拟均严格基于有限体积,其中考虑了非平流过程的全部物理特性,例如重力和毛细作用。总之,我们已经实施了基于流水线的注水管理程序,该程序可以与商业油藏模拟器进行迭代和协作,而无需切换到流水线模拟。通过将有限体积模拟的严格数学性质与基于流线型洪水管理的力量相结合,它为提高棕色油田的采油量提供了有效的解决方案。

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