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Pressure-Transient and Decline-Curve Behavior in Naturally Fractured Vuggy Carbonate Reservoirs

机译:天然裂缝性孔隙碳酸盐岩油藏的压力瞬变和下降曲线行为

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This study presents a new way to model high secondary porosity, mainly vuggy porosity, in naturally fractured reservoirs. New solutions are presented for two cases, one in which there is no primary flow through the vugs (which is an extension of the Warren and Root model) and one in which the dissolution process of pore throats has created an interconnected system of vugs and caves. In both cases, there is an interaction between matrix, vug, and fracture systems. New insights are provided. Both pressure and production responses during transient and boundary-dominated flow periods are explored. In transient well tests, for the case in which there is no primary flow through the vugs, a change of slope could be present during the transition period. Thus, this study shows that slope ratios of 2:1 of an early-or late-time segment vs. a transition segment do not necessarily imply transient interaction between matrix and fractures. It is also shown that the presence of vugs and caves may have a definitive influence on decline-curve and cumulative production behaviors; therefore, it is necessary to incorporate vuggy porosity in the process of type-curve match. Finally, the use of the methodology obtained in this work is illustrated with synthetic and field examples.
机译:这项研究提出了一种模拟自然裂缝储层中高次生孔隙度(主要是孔状孔隙度)的新方法。针对两种情况提出了新的解决方案,一种情况是没有通过微孔的主要水流(这是Warren and Root模型的扩展),另一种情况是孔喉的溶解过程创建了相互连接的微孔和洞穴系统。在这两种情况下,基体,孔洞和断裂系统之间都存在相互作用。提供了新的见解。研究了瞬态和边界支配流动期间的压力和生产响应。在瞬态油井测试中,对于没有主要流量通过孔的情况,在过渡期间可能会出现斜率变化。因此,这项研究表明,早段或后期段与过渡段的坡度比为2:1不一定意味着基体与裂缝之间的瞬时相互作用。研究还表明,孔洞和洞穴的存在可能对下降曲线和累积生产行为产生决定性影响。因此,有必要在类型曲线匹配的过程中纳入孔隙孔隙度。最后,通过综合实例和现场实例说明了在这项工作中获得的方法的使用。

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