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A Workflow to Investigate the Impact of the Spontaneous Imbibition of a Slickwater Fracturing Fluid on the Near Fracture Face Shale Matrix

机译:工作流程,用于调查自发性吸收光裂解液对近骨折脸部页岩基质的影响的影响

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The present study used the workflow presented in Al-Ameri et al.(2018a,2018b)to evaluate the impact of the fracturing fluid imbibition on the near fracture face shale matrix.Al-Ameri et al.(2018b)used carbonaterich outcrop shale core samples that had very low and no clay content.However,in this workflow,core samples from the Barnett reservoir that had an abundant amount of quartz and clay were used.The primary aspect of the current study is to investigate the mutual effect of the shale rock petrophysical properties and the polymer adsorption; moreover,the effect of the shale mineralogical composition on the rock prone to adsorb polymer.The effect of the non-ionic surfactant on the imbibition rates,and also the anisotropy on the rock ability for polymer adsorption were also investigated.The results of this workflow were compared to the Marcellus samples results presented in Al-Ameri et al.(2018b).The workflow incorporates conducting three systematic imbibition experiments for a same shale core sample using brine,slickwater,and brine again.The sample brine permeability was measured before and after the imbibition experiments using a constant rate steady-state permeability setup.The results showed that the polymer adsorption reduces the brine spontaneous imbibition volumes.Moreover,the shale petrophysical properties could dominate the polymer adsorption more than the mineralogical composition.Adding a non-ionic surfactant to the slickwater enhanced the imbibition rate considerably into both of the Barnett and Marcellus shale samples,and that improves the fluid flowback in these shales.The bedding planes and their orientation are among the factors that control the effect of the polymer adsorption on the fluid imbibition rate.The more obvious are the bedding planes,the higher impact of the polymer adsorption on the fluid imbibition rate.However,the petrophysical properties have more effect on the shale prone to adsorb the polymer than the bedding plane orientation.The effect of the polymer adsorption slightly increased the capillary pressure curve.However,as the porosity and permeability increase,the effect of the polymer adsorption on the capillary pressure increases.In comparison to the Eagle Ford shale,the Barnett and Marcellus shales had lower capillary pressure,and that could be one of the reasons of their higher fluid flowback.The impact of the polymer adsorption on the water relative permeability was less for the Barnett sample in comparison to the Marcellus sample because of its lower porosity and permeability.
机译:用于本研究中的Al-AMERI等人提出的工作流。(2018A,2018B),以评估压裂流体吸入对邻近裂缝面页岩matrix.Al-AMERI等人的影响。(2018B)中使用carbonaterich露头页岩芯该样品具有非常低和无粘土content.However,在该工作流中,从贮存器巴尼特即有石英和粘土的量丰富芯样品是当前研究的,低脂主要方面是调查页岩的相互影响岩石岩石学特性和聚合物吸附;此外,页岩矿物成分的在岩石上容易产生非离子表面活性剂对吸液率吸附polymer.The效果,并且在岩石能力聚合物吸附也是各向异性的效果也是此工作流程的影响。结果进行了比较,以Al-AMERI等人提出马塞勒斯样品的结果。(2018B)。该工作流结合使用盐水洗涤,减阻水进行对于相同的页岩岩心样品3个系统的吸实验,和盐水洗涤again.The样品盐水渗透性测量之前和使用恒定速率的吸实验后的稳态渗透率setup.The结果表明,聚合物吸附降低了盐水自吸volumes.Moreover,页岩岩石学特性可支配聚合物吸附多矿物学composition.Adding的非离子型表面活性剂以增强吸液率相当成两个Barnett和马塞勒斯页岩S的滑溜水amples,并改善在这些shales.The理面和它们的取向的流体的回流是控制在流体吸入所述聚合物吸附的效果的因素之一rate.The更明显是理面,所述聚合物的冲击更高吸附在吸胀流体rate.However,岩石物理性质对页岩容易吸附比聚合物吸附的寝具平面orientation.The效果聚合物更效果略有增加的毛细压力curve.However,随着孔隙率和渗透率的增加上的毛细管压力increases.In相比于鹰福特页岩聚合物吸附的效果,Barnett和马塞勒斯页岩具有较低的毛细管压力,这可能是聚合物的其更高的流体flowback.The影响的原因之一吸附在水的相对渗透率为少巴尼特样品相比,样品马塞勒斯由于其较低的孔隙率和每meability。

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