SUBSTANTIATION OF SELECTION OF DRILLING MUD TYPE FOR INITIAL OPENING OF KHAMAKINSKY HORIZON TERRIGENOUS RESERVOIR

IF 0.3 Q4 ENGINEERING, CHEMICAL Chemical and Petroleum Engineering Pub Date : 2023-08-17 DOI:10.17122/ngdelo-2023-3-6-16
V. A. Parfiryev, V.Р. Ovchinnikov, I. V. Druzhinina, N. Zakirov, P. Ovchinnikov, O.V. Rozhkova
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Abstract

Most of the explored and estimated oil reserves of the East Siberian oil and gas province are located in the Republic of Sakha (Yakutia), and in particular, the field is located on the territory of the Lensky district, the development object of which is the formation of the Hamakinsky horizon. The reservoir is characterized by high reservoir properties, oil-saturated thickness, medium permeability, abnormally low pressures, low temperature, the presence of carbonate, terrigenous, chemogenic and karst rocks in the geological section, tectonic deformations, reservoir intrusions and salt-saturated interlayers. These factors create problems in the process of its initial opening, and during further operation cause the deterioration of its filtration and capacitance properties compared to those stated in the design documentation. The use of highly mineralized or anhydrous drilling fluids recommended for drilling wells in the considered oil and gas zone does not allow to overcome the instability of rheological properties, an increase in the values of the filtration index, deep clogging of the reservoir, the accumulation of fluid density and the risk of high repression on the reservoir. The article theoretically substantiates the expediency of using invertemulsion solutions (IES) for the initial opening, the effectiveness of which, compared with aqueous solutions, is expressed in the exclusion of the formation of sludge crusts, stable formation oil-water emulsions and swelling of anhydrite, and the reduction of clogging effect in the near-wellbore part collector. Nevertheless, in order to justify the introduction of one or another composition (type) of IES at the stage of theoretical research, various compositions based on mineral oil, diesel fuel, oil obtained in the course of earlier laboratory tests were considered for comparison with water-based solutions, taking into account required density and clogging action of the flushing fluid, physical and chemical inertness of the dispersed phase of the solution, low formation temperature. The substantiation of the most effective type of fluid was carried out using a methodology based on the method of analysis of hierarchies, the optimality criterion in which is the largest weighted average value of the superiority (priority) of one of the drilling fluid options over others simultaneously in all parameters, taking into account the degree of importance of the latter. Based on estimates of normalized and ideal priorities, it has been established that its highest value, both in the case of a distributed synthesis method and in the ideal one, belongs to oilbased IES.
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哈马斯基层位陆源油藏初开钻井泥浆类型选择的实证研究
东西伯利亚油气省的大部分探明和估计石油储量位于萨哈共和国(雅库特),特别是该油田位于连斯基地区境内,其开发目标是形成哈马斯基层。储层物性高,油饱和厚度大,渗透率中等,异常低压,温度低,地质剖面中存在碳酸盐岩、陆源岩、化生岩和岩溶岩,构造变形,储层侵入,含盐夹层发育。这些因素在其初始打开过程中产生问题,并且在进一步操作期间,与设计文件中所述的相比,会导致其过滤和电容性能的恶化。在考虑的油气区钻井时,建议使用高度矿化或无水钻井液,但这无法克服流变性能的不稳定性、过滤指数的增加、储层的深度堵塞、流体密度的积累以及对储层的高度抑制风险。本文从理论上论证了用逆乳溶液(IES)开孔的便捷性,与水溶液相比,其有效性表现在防止了污泥结壳的形成,稳定了油水乳液的形成和硬石膏的膨胀,减少了近井筒部分收集器的堵塞效应。然而,为了证明在理论研究阶段引入一种或另一种IES成分(类型)的合理性,考虑到冲洗液所需的密度和堵塞作用、溶液分散相的物理和化学惰性、地层温度低,考虑了以矿物油、柴油燃料、早期实验室测试过程中获得的油为基础的各种成分,并与水基溶液进行了比较。采用基于层次分析法的方法来确定最有效的流体类型,其中最优标准是考虑到后者的重要性,在所有参数中同时考虑到一种钻井液方案优于其他方案的最大加权平均值(优先级)。通过对归一化优先级和理想优先级的估计,确定了在分布式综合方法和理想综合方法下,其最大值都属于油基IES。
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来源期刊
Chemical and Petroleum Engineering
Chemical and Petroleum Engineering ENGINEERING, CHEMICAL-
CiteScore
0.60
自引率
33.30%
发文量
129
期刊介绍: Chemical and Petroleum Engineering publishes the latest research on Russian innovations in the field. Articles discuss developments in machinery and equipment, construction and design, processes, materials and corrosion control, and equipment-manufacturing technology. Chemical and Petroleum Engineering is a translation of the Russian journal Khimicheskoe i Neftegazovoe Mashinostroenie. The Russian Volume Year is published in English from April. All articles are peer-reviewed.
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