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Adsorption Isotherms and Permeability of Tight Shales Using Magnetic Suspension Balance Experiments

机译:使用磁悬浮平衡实验的吸附等温线和紧张的紧张的渗透性

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Adsorption and flow characteristics of methane and other natural gases onto tight rock formations is of economic interest for the proper evaluation and production of the field.In this work,a novel technique to enable the determination of adsorption isotherms and permeability of a gas in such formations through the transient analysis of experimental data from magnetic suspension balance is presented.Adsorption of gases onto the tight shale samples were measured using the magnetic suspension balance(MSB)apparatus at a constant pressure and temperature conditions.The current work presents the experimental technique in sufficient detail to allow others to replicate and evaluate the results.MSB has been proved a very effective tool for evaluating the adsorbed amount of gases onto tight shales/coals,especially when the adsorbed amount is very small.A mathematical model based on volume averaging is developed to describe the transient behavior of the MSB-set up,which was utilized to obtain the permeability of shale sample from experimental data.A simple methodology,developed with a theoretical framework,is presented to obtain adsorption isotherm of a gas onto tight shale/coal sample and permeability of the sample.The methodology can be utilized to any type of adsorbing gases and shale/coal samples.In particular,1.Experimental data for adsorption of methane onto a shale sample is presented at 50C and in the pressure up to 25bar using the MSB apparatus.2.The density of methane was also measured with MSB which shows very good match with the data available in literature,demonstrating that MSB can be an excellent tool for density measurement of gases.3.A simple method is developed to decouple the buoyancy effect and obtain the absolute adsorption isotherms.4.Most-importantly,a low-dimensional mathematical model based on volume averaging is developed to describe the transient adsorption process in MSB experiments,which was used to regress the experimental data and obtain the permeability of the shale sample.The permeability versus pressure plot shows the Klinkenberg effect,as expected.Further,the validity and accuracy of the model was verified by comparing the absolute permeability obtained from our method with an independent measurement using pulse-decay experiments.The novelty of the work includes the development of a mathematical model describing the transient adsorption process in MSB experiments that can be utilized to obtain permeability of tight shale samples.In addition,the current work presents how to decouple the buoyancy effects to determine absolute adsorption isotherm.The methodology was tested and verified against the experimental measurements and can be utilized for industrial applications.
机译:吸附和流动甲烷和其它天然气体的特性上紧的岩层是用于field.In的适当的评价和生产此工作的经济利益的,一种新的技术,以使吸附等温线在这样的地层中的确定和渗透性的气体的通过从磁悬浮平衡的实验数据的瞬态分析是气体到紧页岩样品的presented.Adsorption使用磁悬浮天平(MSB)设备在恒定的压力和温度下conditions.The当前工作中呈现足够的实验技术测定细节允许其他人复制和评价results.MSB已被证明用于气体的吸附量评价到非常有效的工具致密页岩/煤,特别是当吸附量是非常small.A开发基于体积平均数学模型来描述MSB集起来,这是用于获得的瞬态行为从实验data.A简单方法,具有理论框架开发页岩样品的透气性,呈现,获得气体的吸附等温线到紧页岩/煤样品和sample.The方法的渗透性可用于任何类型的吸附气体的和页岩/煤samples.In甲烷吸附到一个样品页岩特别地,1.Experimental数据被呈现在50℃,在压力高达25巴使用甲烷的MSB apparatus.2.The密度也与MSB测量其示出了非常良好的匹配与文献中可用的数据,这表明MSB可以是用于gases.3.A简单方法的密度测量的优秀工具被显影以解耦浮力效应和获得绝对吸附isotherms.4.Most-重要的是,一个基于体积平均低维数学模型开发来描述瞬态吸附过程在MSB的实验中,这是用来回归的实验数据,将获得的烫发页岩sample.The渗透率与压力曲线图示出了克氏效应,expected.Further,有效性和模型的准确性的eability通过使用从我们的方法所获得的绝对渗透率与独立的测量进行比较脉冲衰减experiments.The验证工作的新颖性包括描述在可以被利用以获得紧密的页岩samples.In加入渗透性MSB实验瞬态吸附过程的数学模型的发展,目前的工作提出了如何分离所述浮力影响,以确定绝对吸附等温线。的方法进行测试,针对实验测量验证,可用于工业应用。

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