鱼骨完井策略模拟机会指数及辅助历史拟合在致密碳酸盐岩储层现有单口水平井中的应用

B. Bernadi, H. A. A. Al Shehhi, Sara Saleh Abdulla Abdulla Al Ameri, Fatima Omar Alawadhi, Mariam Ahmed Al Hosani, Ahmed Mohamed Al Bairaq, Maksim Kuzevanov, Konstantin Shelepov
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引用次数: 0

摘要

在非均质致密气碳酸盐岩储层中,水平井的轨迹布置是决定油井产能成功与否的重要因素之一。适当的布置可以获得良好的产量,反之,不适当的布置可能会降低油井的产能。为了提高现有单口水平井的产能,该水平井最初位于次优位置,采用了Fishbones完井技术(修井)。本文选择模拟机会指数(SOI)作为指示整个储层剩余气甜点的方法。SOI集成了从静态和动态参数中提取的3个独立分量;通过历史匹配的动态模型计算储层渗透率、厚度、可动气和储层压力。利用SOI,可以绘制出远景天然气甜点图;因此,利用现有性能较低的井,利用Fishbones完井技术开发周围潜在的甜点,Fishbones完井技术由沿水平段放置的最长有效长度为32英尺的微小短针组成。研究表明,鱼骨完井技术在现有低产能水平井上的应用,在多层储层环境下,除了具有显著的增产效果外,还能成倍提高油井产能。辅助历史匹配(AHM)用于探索鱼骨特征组合的最佳方案,例如,作为容纳针的容器空间所需的短节数量、最佳针长度以及放置短节和针的最佳横向排水段。对上述变量进行多次敏感性计算,并进行分析,以确定影响最大的参数,从而获得最高的油井采收率。使用SOI方法仔细检查Fishbone应用的候选井的最佳位置以及所需的短节和针的放置,不仅能够恢复问题井的性能,而且与盲式Fishbone技术安装相比,它可以帮助节省资本支出和有效的项目进度,使用适当数量的短节和针来生产Fishbone。将储层模拟研究与Fishbones完井技术相结合,生成SOI,并将其应用于现有低性能水平井,这是一种真正的研究结合,最终目的是提高致密碳酸盐岩气藏的最终采收率。这是在常规充填钻井开发策略的基础上,实现致密碳酸盐岩气田优化开发的突破性解决方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Application of Simulation Opportunity Index and Assisted History Matching for Fishbone Completion Strategy in the Existing Single Horizontal Well in Tight Gas Carbonate Reservoir
The trajectory placement of a horizontal well that crosses a heterogeneous tight gas carbonate reservoir is one of the important elements that contribute to the success of well productivity. Proper placement can yield good production and vice versa improper placement may give low well productivity. An effort was studied to improve the well productivity from an existing single horizontal well that was initially placed in sub optimal location by implementing the Fishbones completion technology (work-over). In this paper, Simulation Opportunity Index (SOI) has been selected as a method to indicate the remaining gas sweet spot throughout the reservoir. SOI integrates 3 independent components extracted from static and dynamic parameters; reservoir permeability-thickness, movable gas, and reservoir pressure from a historically-matched dynamic model. By utilizing SOI, a map of the prospective gas sweet spots can be created; hence low performance existing wells are utilized to exploit the surrounding potential sweet spots using Fishbones completion, which consists of tiny short needles with a maximum effective length of 32 feet placed along the horizontal section. The study reveals that the Fishbones completion application on existing low-productive horizontal well can multiply the well productivity in multi-layer reservoir environment in addition to the significant production gain. Assisted History Matching (AHM) is used to explore the best scenario of Fishbones features combination, such as the number of Subs required as the container room to hold the needles, the optimum needles length, and the optimum lateral drain section to place the Subs and needles. Many sensitivities with the abovementioned variables are run at once, and the analysis is conducted to identify the most impacting parameter to bring the highest well recovery. The use of SOI method to scrutinize the best location of well candidatures for Fishbone application and the required Subs and needles placement is not only able to rejuvenate the performance of the problematic well, but it can aid in generating CAPEX saving and efficient project schedule to manufacture Fishbones with a proper number of Subs and needles compared to blind Fishbone technology installation. A combination of two techniques between reservoir simulation study to generate SOI with the new advanced completion technology called Fishbones applied on low-performance existing horizontal well is the real study integration with the final objective to increase the ultimate gas recovery in a tight gas carbonate reservoir. This is a breakthrough solution to optimize the development of tight carbonate gas fields in addition to the conventional development strategy with normal infill drillings.
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