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Spontaneous imbibition in fractal tortuous micro-nano pores considering dynamic contact angle and slip effect: phase portrait analysis and analytical solutions

机译:考虑动态接触角和滑移效应的分形曲折微纳米孔中的自发吸收:相图分析和解析解

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Shales have abundant micro-nano pores. Meanwhile, a considerable amount of fracturing liquid is imbibed spontaneously in the hydraulic fracturing process. The spontaneous imbibition in tortuous micro-nano pores is special to shale, and dynamic contact angle and slippage are two important characteristics. In this work, we mainly investigate spontaneous imbibition considering dynamic contact angle and slip effect in fractal tortuous capillaries. We introduce phase portrait analysis to analyse the dynamic state and stability of imbibition. Moreover, analytical solutions to the imbibition equation are derived under special situations, and the solutions are verified by published data. Finally, we discuss the influences of slip length, dynamic contact angle and gravity on spontaneous imbibition. The analysis shows that phase portrait is an ideal tool for analysing spontaneous imbibition because it can evaluate the process without solving the complex governing ordinary differential equations. Moreover, dynamic contact angle and slip effect play an important role in fluid imbibition in fractal tortuous capillaries. Neglecting slip effect in micro-nano pores apparently underestimates imbibition capability, and ignoring variations in contact angle causes inaccuracy in predicting imbibition speed at the initial stage of the process. Finally, gravity is one of the factors that control the stabilisation of the imbibition process.
机译:页岩具有丰富的微纳米孔隙。同时,在水力压裂过程中,大量的压裂液被自吸。曲折的微纳米孔隙中的自发吸收是页岩所特有的,动态接触角和滑移是两个重要特征。在这项工作中,我们主要研究在分形曲折毛细血管中考虑动态接触角和滑移效应的自发吸收。我们引入相画像分析来分析吸水的动态状态和稳定性。此外,在特殊情况下得出了吸水方程的解析解,并用已公开的数据进行了验证。最后,我们讨论了滑动长度,动态接触角和重力对自吸的影响。分析表明,相像是分析自发吸收的理想工具,因为它可以在不求解复杂的控制常微分方程的情况下评估过程。而且,动态接触角和滑动作用在分形曲折毛细管中的流体吸收中起重要作用。忽略微纳米孔中的滑移效应显然低估了吸水能力,而忽略接触角的变化会导致在过程初期无法准确预测吸水速度。最后,重力是控制吸水过程稳定的因素之一。

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