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Determination of petrophysical properties of sedimentary rocks by optical methods

机译:光学法测定沉积岩的岩石物性

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摘要

Petrophysical properties of rocks (thermal diffusivity and conductivity, porosity and density) as well as the correlation between them are of great importance for many geoscientific applications. The porosity of the reservoir rocks and their permeability are the most fundamental physical properties with respect to the storage and transmission of fluids, mainly oil characterization. Accurate knowledge of these parameters for any hydrocarbon reservoir is required for efficient development, management, and prediction of future performance of the oilfield. Thus, the porosity and permeability, as well as the chemical composition must be quantified as precisely as possible. This should be done along with the thermal properties, density, conductivity, diffusivity and effusivity that are intimately related with them. For this reason, photothermal Beam Deflection Spectrometry (BDS) technique for determination of materials' thermal properties together with other methods such as Energy Dispersive X-ray Scanning Electron Microscopy (SEM-EDX) for determining the chemical composition and sample structure, as well as optical microscopy to determine the particles size, were applied for characterization of sedimentary rocks. The rocks were obtained from the Andes south flank in the Venezuela's western basin. The validation of BDS applicability for determination of petrophysical properties of three sedimentary rocks of different texture and composition (all from Late Cretaceous associated with the Luna, Capacho and Colon-Mito Juan geological formations) was performed. The rocks' thermal properties were correlated to the microstructures and"chemical composition of the examined samples. (C) 2017 Elsevier B.V. All rights reserved.
机译:岩石的岩石物理性质(热扩散率和电导率,孔隙率和密度)以及它们之间的相关性对于许多地球科学应用而言都至关重要。储层岩石的孔隙率及其渗透率是流体储存和传输的最基本物理性质,主要是油的表征。要有效开发,管理和预测油田的未来性能,需要对任何碳氢化合物储层具有这些参数的准确知识。因此,必须尽可能精确地量化孔隙率和渗透率以及化学组成。这应该与热特性,密度,电导率,扩散率和发散性密切相关。因此,使用光热束偏转光谱(BDS)技术确定材料的热性能以及其他方法,例如能量分散X射线扫描电子显微镜(SEM-EDX)确定化学成分和样品结构,以及光学显微镜确定颗粒尺寸,用于表征沉积岩。这些岩石是从委内瑞拉西部盆地的安第斯山脉南翼获得的。 BDS适用于确定三种不同质地和组成的沉积岩的岩石物理性质的验证(均来自与白垩纪晚期的Luna,Capacho和Colon-Mito Juan地质构造有关)。岩石的热性质与所检查样品的微观结构和“化学成分”相关。(C)2017 Elsevier B.V.保留所有权利。

著录项

  • 来源
    《Sedimentary geology》 |2017年第1期|72-79|共8页
  • 作者单位

    Univ Nova Gorica, Lab Environm & Life Sci, Vipayska 13, Nova Gorica, Slovenia|Ctr Multidisciplinario Ciencias, Inst Venezolano Invest Cient, Merida 5101, Venezuela;

    Univ Nova Gorica, Lab Environm & Life Sci, Vipayska 13, Nova Gorica, Slovenia;

    Univ Nova Gorica, Mat Res Lab, Vipayska 11c, Ajdovttina 5270, Slovenia;

    Ctr Multidisciplinario Ciencias, Inst Venezolano Invest Cient, Merida 5101, Venezuela|Abdus Salaam Int Ctr Theoret Phys, SPIE ICTP Anchor Res Opt Program Lab, Str Costiera 11, I-34151 Trieste, Italy;

    PDVSA INTEVEP, Caracas 1070A, Venezuela;

    Univ Nova Gorica, Lab Environm & Life Sci, Vipayska 13, Nova Gorica, Slovenia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Sedimentary racks; Beam deflection spectroscopy; Grain size distribution; Petrophysical properties; Chemical composition;

    机译:沉积层架束偏转光谱粒度分布物化性质化学成分;

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