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Effect of Gas Adsorption on Pulse-Decay Permeability Measurements

机译:气体吸附对脉冲腐烂渗透率测量的影响

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Pulse-decay method is a technique used to estimate cores permeability using gas injection based on Darcy’s flow model. Helium and nitrogen are generally used when the target formation is an oil formation or liquid permeability is sought. However, new approaches suggest using CH4 to avoid correcting for properties difference between the testing fluid and reservoir fluid. This study focused on the latter approach to quantify the correction to gas adsorption. The Cui et. al, model based on Langmuir adsorption isotherm is modified to Cui-Freundlich isotherm which has been proven adequate to fit the adsorption on intact reservoir rocks. The model is developed using gas and rock properties and the approach is generalized by using reduced pressure and temperature to account for the gas compressibility. The results of the modified model showed that the new model can capture effective porosity of adsorption used to correct the pulse-decay storage capacity parameters a and b. This correction in the storage volume and rock porosity values will enhance the permeability estimation in the ultra-tight rock samples.
机译:脉冲衰减方法是一种用于使用基于达西流量模型的气体喷射来估计核心渗透性的技术。当目标形成是油形成或液态渗透性时,通常使用氦气和氮气。寻求液态渗透性。然而,新方法建议使用CH4来避免校正测试流体和储层液之间的性质差异。本研究专注于后一种方法来量化对气体吸附的校正。 Cui等。 Al,基于Langmuir吸附等温线的模型被修改为Cui-Freundlich等温线,已被证明是足以适合完整储层岩石的吸附。该模型采用气体和岩石性能开发,通过使用减压和温度来概括该方法,以解释气体可压缩性。修改模型的结果表明,新模型可以捕获用于校正脉冲衰减存储容量A和B的吸附的有效孔隙率。存储体积和岩石孔隙率值中的这种校正将提高超紧岩样品中的渗透率估计。

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