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Application of streamline simulation to gas displacement processes

机译:流线模拟在瓦斯驱替过程中的应用

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摘要

Performance evaluation of miscible and near-miscible gas injection processes is available through conventional finite difference (FD) compositional simulation. Streamline methods have also been developed in which fluid is transported along the streamlines instead of using the finite difference grid. In streamline-based simulation, a 3D flow problem is decoupled into a set of 1D problems solved along streamlines. This reduces simulation time relative to FD simulation, and suppresses the numerical dispersion errors that are present in FD simulations. Larger time steps and higher spatial resolution can be achieved in these simulations. Thus, streamline-based reservoir simulation can be orders of magnitude faster than the conventional finite difference methods. Streamline methods are traditionally only applied to incompressible flow processes. In this paper, the method is adopted and assessed for application to compressible flow processes. A detailed comparison is given between the results of conventional FD simulation and the streamline approach for gas displacement processes. Finally, some guidelines are given on how the streamline method can potentially be used to good effect for gas displacement processes.
机译:通过常规的有限差分(FD)成分模拟,可以进行混溶和近混溶气体注入过程的性能评估。还开发了流线方法,其中流体沿流线传输,而不是使用有限差分网格。在基于流线的模拟中,将3D流问题解耦为沿流线解决的一组一维问题。相对于FD仿真,这减少了仿真时间,并抑制了FD仿真中存在的数值离散误差。在这些模拟中可以实现更大的时间步长和更高的空间分辨率。因此,基于流线的油藏模拟可以比常规的有限差分方法快几个数量级。传统上,流线方法仅适用于不可压缩的流动过程。本文采用并评估了该方法在可压缩流动过程中的应用。在常规FD模拟的结果和用于气体驱替过程的流线方法之间进行了详细的比较。最后,给出了有关如何将流线方法潜在地用于气体置换过程的良好效果的一些指导原则。

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