利用基于动态标记的生产剖面监测技术研究西伯利亚西部某油田MSHF水平井相对于区域应力的最佳布置

Dmitry Shestakov, Ilshat Badrtdinov, Marat Galiev, E. Malyavko, O. Gorbokonenko, Nikita Titovsky, A.Y. Bydzan, V. Bolshakov
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引用次数: 0

摘要

在油气储量难以开采的背景下,在项目实施的初始阶段,及时、高质量的决策变得更加重要。随着开发系统设计任务中使用的许多可变参数,如生产/注入比、井距、井类型、完井方法等,其中一个关键因素是相对于区域应力选择生产井的水平井布置模式。考虑到西西伯利亚油田的低渗透油藏,水力压裂(HF)几乎是唯一有效和经济地管理油藏的方法。在该地区,安装了压裂滑套的水平井是永久性的,而影响有效泄油区形成的一项紧迫任务是确定井眼的位置以及在多级水力压裂(MSHF)过程中相对于最大应力出现的人为裂缝的位置。本文针对某大型油田某区域,为保证稳定采油和提高油藏波及效率,对MSHF水平井的优化布置进行了研究。这项工作的关键目标是确定不同水平井眼朝向的井的长期储量采收率。为了评估水平井的流入剖面和组成,采用了生产测井中先进的行业标准之一——基于动态标记的生产剖面监测技术[1]。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Study into the Optimal Placement of Horizontal MSHF Wells Relative to the Regional Stress in a West Siberian Field Using the Dynamic Marker-Based Production Profile Surveillance Technology
In the context of hard-to-recover hydrocarbon reserves, the role of timely and high-quality decision-making at the initial stage of project implementation is becoming even more crucial. Along with numerous variable parameters used in the development system design tasks, such as the producer/injector ratio, well spacing, well types, completion method, etc., one of the key factors is the selection of a placement pattern for horizontal wellbores of production wells relative to the regional stress. Given the low-permeability reservoirs at the West Siberian fields, hydraulic fracturing (HF) is virtually the only method to manage the reservoirs in an efficient and economic manner. In this region, horizontal wells fitted with frac sleeves are drilled on a permanent basis, while an urgent task that affects the formation of an efficient drainage zone is to substantiate the location of the wellbore and of man-induced fractures that appear during multi-stage hydraulic fracturing (MSHF) relative to the maximum stresses. In this paper, a study into the optimal placement of horizontal MSHF wells was made to ensure stable oil reserves recovery and increase the reservoir sweep efficiency in one of the areas of a large oil field. The key objective in this work was to determine the long-term reserves recovery efficiency in the wells with different orientations of their horizontal boreholes. In order to assess the inflow profile and composition in the horizontal wells, the dynamic marker-based production profile surveillance technology, which is one of the advanced industry standards in production logging, was applied [1].
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