Investigation of Horizontal Wells with Multi-Stage Hydraulic Fracturing Technological Efficiency in the Development of Low-Permeability Oil Reservoirs

Aleksander Valerievich Miroshnichenko, V. Korotovskikh, T. Musabirov, A. Fedorov, Khakim Khalilovich Suleimanov
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Thus, since the first pilot works of drilling technologies and completion of HW with MSHF in 2011, at the beginning of 2020, over 1,200 HW with MSHF were drilled and came on stream at the fields of LLC RN-Yuganskneftegaz, about half of which are at the exploitation play AS10-12 of the northern license territory (NLT) of the Priobskoye field.\n In searching the best technologies and engineering solutions, the company tested different lengths of horizontal section of HW, the number of hydraulic fracturing (HF) stages and distances between hydraulic fracturing ports, as well as different specific mass of the proppant per frac port. Recently, there has been a tendency in design solutions to increase the length of the HWs and the number of hydraulic fractures with a decreasing distance between the frac ports and a decreasing specific mass of the proppant per frac port.\n This work studies the actual and theoretical efficiency of HW with MSHF of various designs (different lengths of horizontal section of HW and the number of HF stages) and to assess the viability of increasing the technological complexity, as well as to analyze the actual impact of loading the proppant mass per port on performing HW with MSHF. 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Abstract

The deterioration of the reservoir properties of potential oil and gas bearing areas on mature and green fields, as well as the increase in the volume of hard-to-recover reserves on low-permeable reservoirs set us new challenges in searching and using effective development technologies to maintain and even increase the oil production levels. Based on successful international experience, Russian oil and gas companies use horizontal wells (HW) with multi-stage hydraulic fracturing (MSHF) for the cost-effective development of low-permeable reservoirs. Thus, since the first pilot works of drilling technologies and completion of HW with MSHF in 2011, at the beginning of 2020, over 1,200 HW with MSHF were drilled and came on stream at the fields of LLC RN-Yuganskneftegaz, about half of which are at the exploitation play AS10-12 of the northern license territory (NLT) of the Priobskoye field. In searching the best technologies and engineering solutions, the company tested different lengths of horizontal section of HW, the number of hydraulic fracturing (HF) stages and distances between hydraulic fracturing ports, as well as different specific mass of the proppant per frac port. Recently, there has been a tendency in design solutions to increase the length of the HWs and the number of hydraulic fractures with a decreasing distance between the frac ports and a decreasing specific mass of the proppant per frac port. This work studies the actual and theoretical efficiency of HW with MSHF of various designs (different lengths of horizontal section of HW and the number of HF stages) and to assess the viability of increasing the technological complexity, as well as to analyze the actual impact of loading the proppant mass per port on performing HW with MSHF. The study is based on the results of the analysis of the factual experience accumulated over the entire history of the development of the exploitation play AS10-12 of the NLT of the Priobskoye field of the Rosneft Company. In studying the viability of increasing the technological complexity, especially, increasing the length of horizontal section of HW, increasing the number of HF stages, and reducing the distance between the frac ports: we discovered the typical methodological errors made in analyzing the efficiency of wells of various designs; we developed the methodology for analysis of the actual multiplicity of indicators of wells of various designs, in particular, HW with MSHF relative to deviated wells (DW) with HF; we carried out the statistical analysis of the actual values of the multiplicity of performance indicators and completion parameters of HW with MSHF of various designs relative to the surrounding DW with HF of the exploitation play AS10-12 of the NLT of the Priobskoye field; we performed the theoretical calculation of the multiplicity of the productivity coefficient for the HW with MSHF of various designs relative to DW with HF for the standard development system of the exploitation play AS10-12 of the NLT of the Priobskoye field; we compared the actual and theoretical results. The paper also presents the results of studying the actual effect of changes of proppant's mass per port on performance indicators of HW with MSHF of the same design and with an increase in the number of fractures of the hydraulic fracturing without changing the length of horizontal section of HW. As for performance indicators, being the basis for estimating the efficiency of HW with MSHF of various designs, we used the productivity index per meter of the effective reservoir thickness and the cumulative fluid production per meter of the effective reservoir thickness per a certain period of operation. And as the completion parameters, we used the length of the horizontal section of HW, the number of HF stages, the distance between the frac ports, and the specific mass of the proppant per meter of the effective reservoir thickness per frac port. The results of this work are the determining vector of development for future design decisions in improving the efficiency of HW with MSHF.
低渗透油藏开发水平井多级水力压裂技术效率研究
成熟油气田和未开发油气田潜在含油区储层物性的恶化,以及低渗透油藏难以开采储量的增加,为寻找和利用有效的开发技术来维持甚至提高采油水平提出了新的挑战。在国际成功经验的基础上,俄罗斯油气公司将水平井(HW)与多级水力压裂(MSHF)相结合,用于低渗透油藏的经济开发。因此,自2011年MSHF钻井技术的第一次试点工作和HW的完成以来,到2020年初,LLC RN-Yuganskneftegaz的油田已经钻探并投产了1200多HW的MSHF,其中约一半位于Priobskoye油田北部许可区(NLT)的AS10-12开采区。为了寻找最佳的技术和工程解决方案,该公司测试了不同的HW水平段长度、水力压裂(HF)级数、水力压裂端口之间的距离,以及每个压裂端口的不同支撑剂比质量。最近,在设计方案中出现了一种趋势,即增加HWs的长度和水力裂缝的数量,同时减少压裂孔之间的距离和每个压裂孔的支撑剂比质量。本文研究了不同设计方案(不同水平段长度、不同压裂段数)的压裂效果和理论效果,评估了提高工艺复杂度的可行性,并分析了每个孔加载支撑剂质量对压裂效果的实际影响。该研究基于对俄罗斯石油公司Priobskoye油田NLT AS10-12开采区块整个开发历史中积累的事实经验的分析结果。在研究提高工艺复杂度的可行性时,特别是增加高压段水平段长度、增加高压段数量和减小压裂段之间距离的可行性时,我们发现在分析各种设计井的效率时存在典型的方法误差;我们开发了一种方法,用于分析各种设计井的实际多重指标,特别是具有MSHF的HW相对于具有HF的斜井(DW);我们对Priobskoye油田NLT开发区块AS10-12的不同设计的带MSHF的HW相对于周围带HF的DW的性能指标和完井参数的多重实际值进行了统计分析;在Priobskoye油田NLT AS10-12开发区块的标准开发系统中,对不同设计的带MSHF的HW相对于带HF的DW的生产力系数进行了理论计算;对实际结果和理论结果进行了比较。本文还介绍了在不改变高压水管水平段长度的情况下,采用相同设计的MSHF,随着水力压裂裂缝数的增加,每孔支撑剂质量变化对高压水管性能指标的实际影响的研究结果。在性能指标方面,我们采用有效储层厚度每米产能指标和有效储层厚度每米累计产液量作为评价各种设计MSHF HW效率的依据。作为完井参数,我们使用了HW水平段的长度、HF级数、压裂口之间的距离以及每个压裂口有效储层厚度每米支撑剂的比质量。这项工作的结果为未来设计决策的发展提供了决定性的矢量,以提高使用MSHF的HW的效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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