采用“Perfobur”技术体系,通过通道径向钻进控制深射孔,强化储层流入

A. Bashirov, I. Galas, I. A. Лягов, M. Nazyrov
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引用次数: 0

摘要

本文介绍了一种利用Perfobur技术系统控制深穿透射孔的技术,通过钻直径为69毫米、长度为25米的径向通道来增加流入。该技术首先应用于Bashkirian层的碳酸盐岩储层,该储层具有高度非均质性和靠近基岩水的特点。选择了一口靠近酸性压裂井、储层性质相同的邻井。井A采用酸压裂,井B采用Perfobur技术,采用两个定向通道,每个通道长度为14米。在“B”井中,钻完通道后,通过一个特殊的水压监测仪喷嘴在两点注入盐酸溶液。B井共注入了48立方米的酸。将B井的结果与进行水力压裂的井进行比较,可以说明控制径向钻井技术的高效率。预测通道轨迹的能力,以及对其实际轨迹的了解,结合在距离储层相当远的地方使用水力监测仪喷嘴对储层进行酸处理,可以在降低采出油含水率的同时显著提高油流量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Controlled deep perforation by radial drilling of channels with the "Perfobur" technical system to intensify the reservoir inflow
The paper presents a technology for controlled deep penetrating perforation using the Perfobur technical system to intensify inflow by drilling radial channels 69 mm in diameter, up to 25 metres in length. This technology was first applied to a carbonate reservoir in the Bashkirian tier, characterised by high heterogeneity and close proximity of bedrock water. An adjacent well, close to the acid fracture well, with identical reservoir properties, was selected. Well "A" was acid fractured and well "B" was drilled using Perfobur technology with two directional channels, each 14 metres in length. In well "B", after drilling the channels, hydrochloric acid solution was injected through a special hydromonitor nozzle at two points. A total of 48 m3 of acid was injected into the "B" well. Comparing the results of well "B" with the well where the hydrofracturing was performed allow speaking about high efficiency of the controlled radial drilling technology. The ability to predict the channel trajectory, knowledge of its actual trajectory in combination with acid treatment of the reservoir using hydromonitor nozzle at a considerable distance from the reservoir allows achieving a significant increase in oil flow rate with lower water cut of the produced oil.
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