Integrated Methodology for Laboratory Evaluation of Shale Plays Cuttings

P. AngélicaMaríaCarreño, T MariadelRosarioPérez, N. Marfisi, J. J. Gómez, C EdgarRicardoPérez
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Abstract

This current paper is intended to show the implemented methodology for integrated mineralogical, geochemical, petrophysical characterization of Shale Plays from the analysis of well cuttings at the Colombian Petroleum Institute (ICP). The implemented methodology starts with taking drilling cuttings (Wet Trench samples) during the drilling of exploratory wells in areas of interest for production of Shale Oil & Gas in diferents Colombian basins. Then fragments are selected (picking) with stereoscopic magnifiers. Observed proportions and lithology in the Formation Evaluation Log (FEL) for a given range should be consistent. Subsequently, the textural and compositional macroscopic description of each sample using Hydrochloric Acid (HCL) to identify carbonates is performed. This description takes into account the degree of effervescence and solid waste analysis. Finally, the percentages of every lithotype present per interval are defined, and this way samples are selected for evaluation. The evaluation of texture and composition of samples was performed by conventional Petrography of relative abundance of elements by means of Scanning Electron Microscopy (SEM). The mineralogical evaluation of samples is performed by X-ray Diffraction (XRD). Furthermore, geochemical analysis of TOC and pyrolysis are performed in some fragments of the selected samples. Other tests include: Mercury Injection Capillary Pressure analysis (MICP), helium porosity, nanoindentation technique. These analyzes are made to determine mechanical properties of the rock. The integrated analysis of these techniques provides information to the mineralogical, geochemical and petrophysical characterization of rocks from a shale plays. This allows defining areas of interest for hydraulic fracturing and production in a UnConventional Reservoirs. The methodology was validated with results obtained from core samples from well Iwana-1 drilled by Ecopetrol in unconventional reservoirs in Middle Magdalena Valley Basin (MMVB). This fact provided competitive advantage to Ecopetrol in exploration and exploitation of Shale Plays. This mineralogical, geochemical and petrophysical characterization laboratory methodology for Shale Plays from well cuttings was used during 2014 at the ICP to characterize 880 ft at El Tablazo Formation in well Casabe K1, 850 ft at La Luna formation in well Golosa 1 and 5,900 ft at Gala 1K at the same formation. This methodology allowed shortening the laboratory analysis time from 120 to 60 days with respect to laboratory tests on a core of 800 ft
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页岩储层岩屑实验室评价的综合方法
本文旨在通过哥伦比亚石油研究所(ICP)的岩屑分析,展示页岩储层综合矿物学、地球化学和岩石物理特征的实施方法。实施的方法首先是在哥伦比亚不同盆地页岩油气生产感兴趣的地区钻探探井时采集钻井岩屑(湿沟样品)。然后用立体放大镜选择碎片(拾取)。在给定范围的地层评价测井(FEL)中观察到的比例和岩性应该是一致的。随后,使用盐酸(HCL)对每个样品的结构和组成进行宏观描述,以识别碳酸盐。这种描述考虑了起泡程度和固体废物分析。最后,定义每个间隔存在的每种岩型的百分比,这样就可以选择样本进行评估。用常规岩石学方法对样品的结构和组成进行了评价,并用扫描电镜(SEM)对元素的相对丰度进行了评价。采用x射线衍射(XRD)对样品进行矿物学评价。此外,对所选样品进行了TOC地球化学分析和热解分析。其他测试包括:压汞毛细管压力分析(MICP)、氦孔隙度、纳米压痕技术。这些分析是为了确定岩石的力学特性。这些技术的综合分析为页岩区岩石的矿物学、地球化学和岩石物理特征提供了信息。这样就可以确定非常规油藏中水力压裂和生产的兴趣区域。Ecopetrol在中Magdalena Valley Basin (MMVB)非常规油藏中钻探的Iwana-1井岩心样品验证了该方法的有效性。这一事实为Ecopetrol在页岩区勘探和开发提供了竞争优势。2014年,ICP在Casabe K1井El Tablazo地层的880英尺、Golosa 1井La Luna地层的850英尺和Gala 1K地层的5900英尺处使用了这种页岩岩块矿物学、地球化学和岩石物理表征实验室方法。这种方法可以将实验室分析时间从120天缩短到60天,相对于800英尺的岩心的实验室测试
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Modeling of Matrix-Fracture Transfer with Non-Uniform Block Distributions in Unconventional Low-Permeability Fractured Reservoirs Application of Multi-Functionalized Surfactant to Enhance Hydrocarbon Production in Tight Oil & Gas Formations Yields Successful Results Completion Diagnostics Learnings from Shale Development Projects Integrated Methodology for Laboratory Evaluation of Shale Plays Cuttings Application of The Technique MPD Using Automated Systems for Non-Conventional Wells Drilling with Narrow Operating Window in the Neuquén Basin
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