北科威特巨型碳酸盐岩油藏注水数值分析评价

B. Al-Otaibi, Sadok Lamine
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引用次数: 0

摘要

水驱是北科威特油藏的主要驱油机制。为开发大型碳酸盐岩储层,采用了不同的开发策略。在近5年的时间里,我国实施了不规则的WF方案,这给正确评价WF性能带来了挑战。本文采用数值方法和解析方法对该油藏注水开发现状进行了评价。第一种方法使用实际生产和注入数据来生成传统的水驱图,如WOR与Np、注入通量、VRR和其他诊断。第二种方法是利用数值模型从生产和注水的角度来理解流体运动。采用高分辨率模型来了解水平产注井的WF方案。流线模型工具用于了解注入管如何影响周围的产油系统。利用模拟模型计算了注入效率、分配系数和油藏波及效率。为了更好地评价注水效果,对两种方法进行了比较。当注水开始时,以规则的i-9点模式开发油藏。从各网段的不同表现可以明显看出储层的非均质性。此外,高渗透层(小偷层)也对储层在WF过程中的表现产生了不利影响。含水率的急剧增加和相应的采收率非常低,引发了该水淹油藏开发模式的转变。下一阶段是在底层注入,在上层(水平井)生产。这给评估WF计划的性能带来了很大的挑战。评估这种发展战略仍然是一项挑战。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Numerical and Analytical Waterflood Evaluation of North Kuwait Giant Carbonate Reservoir
Waterflood (WF) is the main drive mechanism of North Kuwait reservoirs. Different development strategies has been adopted to develop a giant carbonate reservoir in the asset. Irregular scheme of WF has been implemented in the last 5 years which made it challenging to properly evaluate the WF performance. This paper presents both numerical and analytical approaches to assess the current performance of the waterflood in this reservoir. The first method uses actual production and injection data to generate traditional waterflood plots such WOR vs. Np, injection throughput, VRR and other diagnostics. The second approach uses the numerical model to understand the fluid movements in terms of production and water injection. A high resolution model is used to know about the horizontal producers and injectors WF scheme. Streamline model tool is used to understand how the injectors impact their surrounding producers. Injector's efficiency, allocation factors and reservoir sweep efficiency are calculated using the simulation model. Both approaches are compared to have a better evaluation of the waterflood. When the waterflood started, a regular i-9 spot patterns was the way to develop the reservoir. The heterogeneity of the reservoir was observed clearly in the different performance of each pattern. Also, high permeability layer (thief zone) has adversely affected the reservoir performance during WF. The sharp increase of water cut with very low corresponding recovery factor triggered a paradigm shift in developing this waterflooded reservoir. Injecting in lower layers and producing in upper layers (horizontal wells) was the next stage. This brought a great challenge to assess the performance of this WF scheme. Evaluating such a development strategy remains a achallenge.
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