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Analytical Approximate Expression for Cocurrent Imbibition during Immiscible Two-Phase Flow through Porous Media

机译:互不相溶的两相流过多孔介质时并发吸水的解析近似表达式

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摘要

Cocurrent and countercurrent imbibitions are the crucial mechanism in many multiphase flow processes. In cocurrent imbibition wetting phase displaces nonwetting phase such that the nonwetting phase moves in the same direction to the wetting phase, whereas in countercurrent imbibitions wetting and non-wetting phase flow in opposite directions. However for cocurrent imbibitions, mathematical models need total flux condition as both phases flow in the same direction. Thus cocurrent imbibitions have been considered neglecting pressure gradient of nonwetting phase and only pressure gradient of displacing phase is considered which gives additional velocity to the displacing phase. An approximate analytical solution is derived by the method of small parameter; an approximate expression for the wetting phase saturation has been obtained. From analytical expression graphical presentation of saturation of wetting phase shows that cocurrent imbibition is faster than countercurrent imbibition. Also, the small parameter is chosen from initial wetting phase saturation and wetting phase saturation at imbibition phase, thus giving comparative behavior of imbibition at initial and later stage. It is shown that cocurrent imbibition proceeds faster with more amount of wetting phase present in porous matrix.
机译:并流和逆流吸收是许多多相流过程中的关键机制。在顺流吸收中,润湿相取代了非润湿相,从而使非润湿相沿相同的方向移动到润湿相,而在逆流吸收中,润湿相和非润湿相沿相反的方向流动。但是,对于并流吸收,数学模型需要总通量条件,因为两相都沿相同方向流动。因此,并流吸收被认为忽略了非润湿相的压力梯度,而只考虑了位移相的压力梯度,这为位移相提供了额外的速度。用小参数方法推导了近似的解析解。已经获得了润湿相饱和度的近似表达式。从解析表达式的润湿相饱和度的图形表示可以看出,并流吸收比逆流吸收更快。而且,从初始润湿相饱和度和吸水阶段的润湿相饱和度中选择较小的参数,从而给出在初始阶段和后期的吸水性能。结果表明,随着多孔基质中存在更多的润湿相,并流吸取进行得更快。

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  • 来源
    《Mathematical Problems in Engineering》 |2014年第2期|638409.1-638409.6|共6页
  • 作者

    Saroj R. Yadav; Manoj N. Mehta;

  • 作者单位

    Applied Mathematics and Humanities Department, S. V. National Institute of Technology, Surat 395007, India;

    Applied Mathematics and Humanities Department, S. V. National Institute of Technology, Surat 395007, India;

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