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Evaluating fractures in rocks from geothermal reservoirs using resistivity at different frequencies

机译:使用不同频率的电阻率评估地热储层岩石中的裂缝

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One of the key issues to a successful EGS (Enhanced or engineered Geothermal System) is the creation of a great density of fractures. The detection and characterization of the created fractures is crucial in evaluating the geothermal energy resources in such EGS projects as well as in reservoirs for CO2 sequestration and storage. Methods to evaluate the fractures after stimulations are few, and limited in application. To this end, an approach to detecting and evaluating the fractures using resistivity data measured at different frequencies was developed in this study. The effects of fractures on resistivity measurements at different frequencies have been investigated as a function of water saturation in rocks with different porosity, permeability and lithology. Different rocks (Berea sandstone, and greywacke from The Geysers geothermal reservoir) were used in this study. The permeability of the samples ranged from 0.5 to over 1000 md for the matrix. The frequency ranged from 100 to 100,000 Hz. It was found that the effect of frequency on resistivity is different in rocks with and without fractures, especially in the range of low water saturation. The validity of the Archie equation depends on the existence of fractures, the frequency, and the range of water saturation. The relationship between resistivity and water saturation did not follow the Archie equation at low water saturation in some rocks with fractures. Models for characterizing different types of rocks with specific fracture patterns have been established using the resistivity data measured at different frequencies and different water saturations. (C) 2015 Elsevier Ltd. All rights reserved.
机译:成功的EGS(增强或工程地热系统)的关键问题之一是产生高密度的裂缝。检测和表征所产生的裂缝对于评估此类EGS项目以及二氧化碳封存和封存油藏中的地热能源至关重要。增产后评估骨折的方法很少,并且应用有限。为此,本研究开发了一种使用在不同频率下测量的电阻率数据来检测和评估裂缝的方法。已经研究了在不同频率下裂缝对电阻率测量的影响,它是孔隙率,渗透率和岩性不同的岩石中水饱和度的函数。在这项研究中使用了不同的岩石(Beey砂岩和来自Geysers地热储层的greywacke)。样品的渗透率范围从0.5到1000 md以上。频率范围从100到100,000 Hz。研究发现,频率对电阻率的影响在有裂缝和无裂缝的岩石中是不同的,特别是在低含水饱和度的范围内。 Archie方程的有效性取决于裂缝的存在,频率和含水饱和度的范围。在某些含裂缝的岩石中,在低含水饱和度时,电阻率与含水饱和度之间的关系并不遵循Archie方程。使用在不同频率和不同水饱和度下测得的电阻率数据,已经建立了表征具有特定裂缝型式的不同类型岩石的模型。 (C)2015 Elsevier Ltd.保留所有权利。

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