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Multi-scale flow simulation in fracture-vuggy reservoirs based on pseudo-particle method

机译:基于伪粒子法的骨折 - 沃格陀储层多尺度流模拟

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摘要

Fracture-vuggy reservoirs have multiple storage space with irregular geometry and various scales, the scales ranges from a few microns to tens of meters. There are many flow states in the reservoir, such as fluid flow in porous medium, free flow in cave and fractures. Physical simulation and conventional numerical simulation methods difficult to accurately describe the flow characteristics of such reservoirs. In this paper, we use two phase flow multi-scale pseudo-particle discrete calculation model for flow simulation of such reservoirs. This model characterised the surface tension through introducing a repulsion between two phase interfaces, simulated wettability by introducing the force of Lennard-Jones form. The results shows that this method can simulate fluid flow of such reservoir well, determined the types and distribution of macroscopic remaining oil with different fracture-cave combination, supplied basis for further development remaining oil of this kind of reservoirs. [Received: January 29, 2016; Accepted: June 7, 2017].
机译:骨折 - Vuggy水库具有多个存储空间,具有不规则的几何形状和各种秤,尺度范围从几微米到几十米。储层中有许多流动状态,例如多孔介质中的流体流动,洞穴中的自由流动和裂缝。物理仿真和常规数值模拟方法难以准确地描述这种储存器的流动特性。在本文中,我们使用两种流量多尺度伪粒径离散计算模型进行这种储存器的流动模拟。该模型通过引入两个相位界面之间的排斥来表征表面张力,通过引入Lennard-Jones形式的力来引入模拟润湿性。结果表明,该方法可以模拟这种储存井的流体流动,确定宏观剩余油与不同骨折组合的类型和分布,提供这种储层的进一步发展剩余油的基础。 [收到:2016年1月29日;接受:2017年6月7日]。

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