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Pore characterization of shales: A review of small angle scattering technique

机译:Shales的孔隙特征:小角度散射技术综述

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To better evaluate the reservoir quality and optimize shale gas extraction, it is necessary to quantitatively characterize pore structure in shale reservoirs using complementary methods. Conventional tools that have been used extensively for pore characterization include gas physisorption, mercury injection capillary pressure (MICP), nuclear magnetic resonance (NMR). Small- and ultra-small-angle scattering (SAS and USAS) techniques use neutrons or X-ray beam to penetrate shales and obtain information on its pore structure by measuring the intensity of scattered radiation within a range of scattering angles. SAS and USAS measures total pores in a size range from 0.5 nm to 20 mu m. The petrophysical parameters such as porosity, pore size distribution (PSD), fractal dimension, and pore connectivity of shale reservoirs can be obtained by analyzing the SAS/USAS data using recently established mythology. The difference in the results of porosity and PSD between the scattering technique and fluid intrusion or physisorption techniques can provide unique information on closed pores. As reported in the literature, contrast-matching small-angle neutron scattering (CM-SANS) experiments can effectively characterize the accessibility of pores to various fluids to assess the pore connectivity of shale reservoirs. Future perspectives of utilizing SAS/USAS techniques are also put forward in the review.
机译:为了更好地评估储层质量和优化页岩气提取,需要使用互补方法定量表征页岩储层的孔结构。广泛用于孔表征的常规工具包括气体理由,汞注射毛细压力(MICP),核磁共振(NMR)。小型和超小角散射(SAS和USAS)技术使用中子或X射线束通过测量散射角度范围内的散射辐射的强度来渗透HALES并在其孔结构上获得信息。 SAS和USAS测量尺寸范围为0.5nm至20 mu m的总毛孔。通过使用最近建立的神话进行分析SAS / USAS数据,可以通过分析SAS / USAS数据来获得散蚀剂,孔径分布(PSD),分形尺寸和孔连接的岩石物理参数。散射技术与流体入侵或理热技术之间的孔隙率和PSD结果的差异可以提供有关闭孔的独特信息。如在文献中所报道的,对比度匹配的小角中子散射(CM-SANS)实验可以有效地表征孔到各种流体的可达性,以评估页岩储层的孔连接。在审查中也提出了利用SAS / USA技术的未来观点。

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