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Study on the Coupled Effect of Effective Stress and Methane GasAdsorption on the Porosity and Permeability of Shale Gas Reservoirs

机译:有效应力和甲烷气吸收对页岩气藏孔隙率和渗透性的耦合效应研究

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Shale gas is considered very important unconventional hydrocarbon resources.Due to the technologicaladvances of hydraulic fracturing,the development of shale gas has become the main focus in recent years.Porosity and permeability are the most important petrophysical parameters during the production of shalegas.A considerable amount of research work has been carried out on stress law of porosity and permeability.However,nearly none of them considered the effects of methane adsorption.This paper utilizes the simplified local-density(SLD)theory to study adsorption of supercritical gas inshale gas reservoirs.On the basis of the basic features of high pressure supercritical adsorption of shale gas,Peng-Robinson equation is used to describe adsorbed fluid.The interaction between the gas moleculesand porewalls of shale is considered using Lennard-Jones potential.Finally,we establish the SLD model todo regression analysis for the adsorption experiments data.The density of adsorbed phase and free phasedensity could be obtained applying SLD model and then the amount of gas adsorption can be determined.The Gibbs adsorption amount calculated using the SLD model is used to establish matrix strain model.Finally,the strain model is incorporated into widely used analytical porosity and permeability models todevelop the coupled model with consideration of the coupled effect of gas adsorption and stress on theporosity and permeability of shale gas reservoirs.And the trend of variation of porosity and permeabilityof shale rocks taking account of the effects of stress and gas adsorption can be obtained.Lab experiments of gas adsorption of methane gas are made on three shale samples.The developedSLD model is applied to describe gas adsorption data.The outcome indicates that SLD model can properlyanalyze and fit the experimental data.From the results calculated by the new developed model of porosityand permeability,we can conclude that porosity ratios and permeability ratios of gas shales decrease withthe increase of pore pressure,which is contrary to the tendency of changes in porosity and permeabilityonly taking account of the effects of effective stress.This result demonstrates that gas adsorption has verylarge impact on pore volume,therefore the deformation of matrix induced by the adsorption of methanegas cannot be neglected.The proposed model could further be used for the accurate evaluation of storage capacity of shale gasreservoirs and gas production of wells.
机译:页岩气被认为是非常重要的非传统的烃resources.Due水力压裂的technologicaladvances,页岩气的发展已经成为最近years.Porosity和渗透性的主要焦点是生产shalegas.A相当长的期间,最重要的物性参数的研究工作已经在孔隙度和permeability.However应力法进行,几乎没有人认为甲烷adsorption.This纸的效果采用了简化的本地密度(SLD)理论,超临界气体的吸附研究inshale气藏。对页岩气的高压超临界吸附的基本特征的基础上,鹏罗宾逊方程来描述气体moleculesand页岩porewalls使用伦纳德 - 琼斯potential.Finally被视为之间吸附流体。相互作用,我们建立了SLD吸附相和fr的data.The密度模型待办事项回归分析用于吸附实验可以得到施加SLD模型EE phasedensity然后气体吸附量可以使用SLD模型被用于建立矩阵应变model.Finally计算determined.The吉布斯吸附量,形变模型并入到广泛使用的分析孔隙度和渗透率模型todevelop考虑的气体吸附和应力对theporosity和页岩气的渗透性的效果耦合耦合模式reservoirs.And孔隙率的变化趋势和permeabilityof页岩岩石服用应力和气体吸附的作用帐户可以得到。三个页岩samples.The developedSLD模型是由甲烷气体的气体吸附的实验室实验中用于描述气体吸附data.The结果表明,SLD模型可以properlyanalyze和符合实验data.From通过新开发的模型的计算结果porosityand渗透性,我们可以得出结论气体页岩的孔隙度比率和磁导率的比率小号降低孔隙压力,这是违背了孔隙率和变化permeabilityonly考虑到的有效stress.This导致的影响的倾向的任意不等阶增加表明,气体吸附具有孔体积verylarge影响,所以由感应基质的变形methanegas的吸附不能neglected.The提出的模型可以进一步用于页岩gasreservoirs的存储容量和气体生产井的准确的评价。

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