Application of Geo-Chemical Indicators for Sedimentology Description Clarifying of Bazhenov and Abalak Formation in Krasnoleninskoe Field

E. Avramenko, M. Grischenko, A. Akhmadishin, A. Kudamanov, M. Smyshlyaeva, S. Kuzmina, V. Marinov, A. Potapova
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According to strategy, a nonconventional reservoirs of the Bazhenov-Abalak complex (BAC) of developed by JSC RN-Nyaganneftegaz the Krasnoleninsky District are defined in the first group of effectiveness.\n The reservoirs contain significant oil reserves in YK0 and YK1 layers, but at the moment recovery from initial recoverable reserves is only 10%. Production is mainly in the Central section of the Em-Yegovsky field, which is characterized by the high density of the reserves.\n Increasing of the drilling efficiency and a perspective of development is constrained not only by the lack of methods of forecasting productive zones and technologies for effective extraction of reserves from non-traditional reservoirs, but also by the extremely low level of study of the object. With the purpose of preparing reserves for industrial development, it is required to create a set of methods for studying and laboratory core research, estimation of reservoir parameters, methods for assessing the influence of process fluids, and non-standard approaches for forecasting productive zones and efficient extraction of non-traditional reserves.\n In 2017, RN-Nyaganneftegaz JSC for the implementation of the 5-year project in order to select technologies for localization and extraction of reserves allocated a test site with an area of 400 square kilometers in the territory of the Em-Yegovsky license block. The explored polygon covers zones of different types of the Bazhenov-Abalak structure: there are areas of different density of faults and fractures (from low to extremely high), as well as different degrees of maturity of organic matter.\n The central part of the local structure is covered by 3D seismic studies with increased multiplicity, as well as characterized by exploratory and operational drilling, which provided the core from the interval in 2016-2017.\n At present, RN-Nyaganneftegaz JSC jointly with the Tyumen Petroleum Research Center is carrying out the research work based on a comprehensive study of the Bazhenov-Abalak complex in the Em-Yegovsky field. The program of scientific project includes: Complex core studies: routine, special, mineralogical, lithological, geochemical, pyrolytic, thermophysical and geomechanical studies, determination of porosity and permeability, study of the structure and maturity of organic matter, pore space structure by microtomography, mercury porosimetry.Construction of mechanical and petrophysical models of reservoirs and sediment coverings based on core data and geophysical data.Testing various techniques for processing and interpreting seismic data to predict the properties of the deposits (porosity, permeability, brittleness, fracturing).Improvement of methods and tools of geological modeling for mapping of productive zones of reservoirs.\n According to the R & D program the types and volumes of research performed are multifaceted and cover various areas of knowledge. Within the framework of this article, the authors confine themselves to the results of a complex study of the material composition in order to clarify sedimentation environments in the sediments of the Bazhenov-Abalak complex of the Krasnoleninsky District.\n Core studies were performed on 11 wells with maximum core removal and an extended geophysical complex.\n Based on the core study results, the hypothesis of the facial conditions of sedimentation was put forward for further geological modeling of the object.\n Krasnoleninsky fold is located in the southwest of the West Siberian oil and gas province and includes a number of areas, including the Em-Yegovsky field (Figure 1). Figure 1Overview of the work area\n The Bazhenov-Abalak complex is widely developed on the territory of the Em-Yegovsky field and includes the Tutleima (analogue of the Bazhenov) formation and the underlying Abalak suite. In general, the object is maintained in area and is characterized by the following parameters (Table 1). Table 1Parameters of objectsParametersTutleima Formation (Bazhen)Abalak formationDepth, TVDSS, m−2230−2265Thickness, m3525Formation temperature, °C100100Reservoir pressure, atm–235\n Based on the results of testing and the history of wells, the main productive interval is confined to the top of the Abalak suite.\n The received inflows are characterized by high initial oil rates up to 300 m3/day and a rapid decline in production and reservoir pressure, which indicates the presence of high-permeability filtration channels and limited drainage area. Individual wells have a significant cumulative production to hundreds of thousands of tons and a long period stable operation.","PeriodicalId":242965,"journal":{"name":"Day 2 Tue, October 16, 2018","volume":"85 1","pages":"0"},"PeriodicalIF":0.0000,"publicationDate":"2018-10-15","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Day 2 Tue, October 16, 2018","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.2118/191489-18rptc-ms","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
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Abstract

The interests of many leading oil companies of the world have turned to the oil shales. Significant volumes of hydrocarbons concentrated in oil source rocks stimulate a constant search for technologies for the evaluation and production of hard-to-recover reserves both from operators and the state. The segment strategy of hard-to-recover stocks (TRIZ) is formed in Rosneft Oil Company. According to strategy, a nonconventional reservoirs of the Bazhenov-Abalak complex (BAC) of developed by JSC RN-Nyaganneftegaz the Krasnoleninsky District are defined in the first group of effectiveness. The reservoirs contain significant oil reserves in YK0 and YK1 layers, but at the moment recovery from initial recoverable reserves is only 10%. Production is mainly in the Central section of the Em-Yegovsky field, which is characterized by the high density of the reserves. Increasing of the drilling efficiency and a perspective of development is constrained not only by the lack of methods of forecasting productive zones and technologies for effective extraction of reserves from non-traditional reservoirs, but also by the extremely low level of study of the object. With the purpose of preparing reserves for industrial development, it is required to create a set of methods for studying and laboratory core research, estimation of reservoir parameters, methods for assessing the influence of process fluids, and non-standard approaches for forecasting productive zones and efficient extraction of non-traditional reserves. In 2017, RN-Nyaganneftegaz JSC for the implementation of the 5-year project in order to select technologies for localization and extraction of reserves allocated a test site with an area of 400 square kilometers in the territory of the Em-Yegovsky license block. The explored polygon covers zones of different types of the Bazhenov-Abalak structure: there are areas of different density of faults and fractures (from low to extremely high), as well as different degrees of maturity of organic matter. The central part of the local structure is covered by 3D seismic studies with increased multiplicity, as well as characterized by exploratory and operational drilling, which provided the core from the interval in 2016-2017. At present, RN-Nyaganneftegaz JSC jointly with the Tyumen Petroleum Research Center is carrying out the research work based on a comprehensive study of the Bazhenov-Abalak complex in the Em-Yegovsky field. The program of scientific project includes: Complex core studies: routine, special, mineralogical, lithological, geochemical, pyrolytic, thermophysical and geomechanical studies, determination of porosity and permeability, study of the structure and maturity of organic matter, pore space structure by microtomography, mercury porosimetry.Construction of mechanical and petrophysical models of reservoirs and sediment coverings based on core data and geophysical data.Testing various techniques for processing and interpreting seismic data to predict the properties of the deposits (porosity, permeability, brittleness, fracturing).Improvement of methods and tools of geological modeling for mapping of productive zones of reservoirs. According to the R & D program the types and volumes of research performed are multifaceted and cover various areas of knowledge. Within the framework of this article, the authors confine themselves to the results of a complex study of the material composition in order to clarify sedimentation environments in the sediments of the Bazhenov-Abalak complex of the Krasnoleninsky District. Core studies were performed on 11 wells with maximum core removal and an extended geophysical complex. Based on the core study results, the hypothesis of the facial conditions of sedimentation was put forward for further geological modeling of the object. Krasnoleninsky fold is located in the southwest of the West Siberian oil and gas province and includes a number of areas, including the Em-Yegovsky field (Figure 1). Figure 1Overview of the work area The Bazhenov-Abalak complex is widely developed on the territory of the Em-Yegovsky field and includes the Tutleima (analogue of the Bazhenov) formation and the underlying Abalak suite. In general, the object is maintained in area and is characterized by the following parameters (Table 1). Table 1Parameters of objectsParametersTutleima Formation (Bazhen)Abalak formationDepth, TVDSS, m−2230−2265Thickness, m3525Formation temperature, °C100100Reservoir pressure, atm–235 Based on the results of testing and the history of wells, the main productive interval is confined to the top of the Abalak suite. The received inflows are characterized by high initial oil rates up to 300 m3/day and a rapid decline in production and reservoir pressure, which indicates the presence of high-permeability filtration channels and limited drainage area. Individual wells have a significant cumulative production to hundreds of thousands of tons and a long period stable operation.
地球化学指标在克拉斯诺列宁斯科油田Bazhenov组和Abalak组沉积学描述澄清中的应用
世界上许多主要石油公司的利益都转向了油页岩。油气源岩中大量的碳氢化合物,促使油气公司和州政府不断寻找难以开采储量的评价和生产技术。俄罗斯石油公司形成了难回收股细分战略。根据该策略,JSC RN-Nyaganneftegaz在Krasnoleninsky地区开发的Bazhenov-Abalak杂岩(BAC)中的一个非常规储层被确定为第一组有效储层。YK0层和YK1层具有丰富的石油储量,但目前初始可采储量的采收率仅为10%。生产主要集中在Em-Yegovsky油田的中部,其特点是储量密度高。钻井效率和开发前景的提高不仅受到非常规油藏有效开采储量的预测方法和技术的缺乏,而且受到对该对象的研究水平极低的制约。为了为工业开发准备储量,需要建立一套研究和实验室岩心研究、储层参数估计、过程流体影响评估方法以及预测生产区域和有效开采非传统储量的非标准方法。2017年,为了实施为期5年的项目,以选择储量定位和开采技术,俄罗斯ria - nyaganneftegaz JSC在Em-Yegovsky许可区块的领土上分配了一个面积为400平方公里的试验场。勘探多边形覆盖了不同类型的Bazhenov-Abalak构造带,断层和裂缝密度不同(从低到极高),有机质成熟度不同。局部结构的中心部分被三维地震研究覆盖,增加了多样性,并以勘探和作业钻井为特征,提供了2016-2017年段的岩心。目前,RN-Nyaganneftegaz JSC与秋明石油研究中心正在对Em-Yegovsky油田的Bazhenov-Abalak复合体进行综合研究,开展研究工作。科学项目包括:复杂岩心研究:常规、特殊、矿物学、岩性、地球化学、热解学、热物理和地质力学研究、孔隙度和渗透率测定、有机质结构和成熟度研究、微层析成像孔隙空间结构、汞孔隙度测定等。基于岩心资料和地球物理资料的储层和沉积物覆盖层力学和岩石物理模型的建立。测试各种处理和解释地震数据的技术,以预测矿床的性质(孔隙度、渗透率、脆性、压裂)。储层产层填图地质建模方法和工具的改进。根据研发计划,研究的类型和数量是多方面的,涵盖了不同的知识领域。在本文的框架内,作者将自己局限于对物质组成进行复杂研究的结果,以澄清克拉斯诺列insky地区Bazhenov-Abalak复合体沉积物中的沉积环境。对11口井进行了岩心研究,最大限度地去除了岩心,扩展了地球物理复合体。在岩心研究结果的基础上,提出了沉积面相条件假设,为该目标的进一步地质建模奠定了基础。Krasnoleninsky褶皱位于西西伯利亚油气省的西南部,包括Em-Yegovsky油田在内的多个区域(图1)。Bazhenov-Abalak综合体在Em-Yegovsky油田范围内广泛开发,包括Tutleima(类似Bazhenov)地层和下面的Abalak套。总的来说,目标层保持在一定的面积内,其特征参数如下(表1):表1目标层参数参数stutleima地层(巴镇)Abalak地层深度,TVDSS, m−2230−2265厚度,m3525地层温度,°c100100,储层压力,mm - 235根据测试结果和井史,主要生产层段局限于Abalak套的顶部。接收的流入具有初始产油速率高,可达300 m3/天,生产和储层压力迅速下降的特点,这表明存在高渗透过滤通道和有限的排水面积。单井累计产量可达数十万吨,且长期稳定运行。
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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