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A Systematic Approach to Effective Flow Property Determination for Deepwater Heavy Oil Evaluation

机译:深水重油评价有效流动性能测定的系统方法

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Coarse scale modeling of deepwater turbidites requires that effective properties be developed to capture the fine scale flow behavior. In displacements with unfavourable mobility ratio, displacement instabilities at the shockfront may exist resulting in the occurrence of viscous fingers that reduce breakthrough recovery and increase gas and water production. Viscous fingering effects have been studied and demonstrated by laboratory experiments. The practical scale of fine scale models is usually too large to resolve viscous fingering effects. Hence evidence of viscous fingering has to be tested and appropriate upscaling applied at the fine scale modeling stage. A two stage upscaling technique has been developed for heavy oil effective flow properties determination, a viscous fingering correction and generation of dynamic pseudos. The viscous fingering correction was done using the method of Clemens and Wit. This assumes that viscous fingers can be described by using a segregated flow approach. Upscaled rock relative permeability for viscous fingering was then used as input into the fine scale modeling. To upscale to the coarse scale model a history matching approach was applied to generate dynamic pseudos.
机译:深水陀螺沟槽粗级造型要求开发有效性能以捕获微量尺度流动行为。在具有不利迁移率的位移中,可能存在在震动的位移稳定性导致粘性手指的发生,从而减少突破性恢复并增加气体和水生产。通过实验室实验研究和展示了粘性手指效应。实际规模的精细规模模型通常太大而无法解析粘性手法效应。因此,必须在细量造型阶段测试和适当地进行粘性手指的证据。已经开发了两级升级技术,用于重油有效流动性能测定,粘性指法校正和动态伪腐烂的产生。使用克莱丝和机智的方法进行粘性指令校正。这假设可以通过使用隔离的流动方法来描述粘性手指。然后将升高的岩石相对渗透性用作细尺建模的输入。为了高档到粗略尺度模型,应用历史匹配方法来生成动态伪。

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