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A New Approach for Study the Electrohydrodynamic Oscillatory Flow Through a Porous Medium in a Heating Compliant Channel

机译:一种新方法,用于在加热兼容通道中通过多孔介质研究电液动力振荡流动

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摘要

The governing equations of an electrohydrodynamic oscillatory flow were simplified, using appropriate nondimensional quantities and the conversion relationships between fixed and moving frame coordinates. The obtained system of equations is solved analytically by using the regular perturbation method with a small wave number. In this study, modified non-dimensional quantities were used that made fluid pressure in the resulting equations dependent on both axial and vertical coordinates. The current study is more realistic and general than the previous studies in which the fluid pressure is considered functional only in the axial coordinate. A new approach enabled the author to find an analytical form of fluid pressure while previous studies have not been able to find it but have found only the pressure gradient. Analytical expressions for the stream function, electrical potential function and temperature distribution are obtained. The results show that the electrical potential function decreases by the increase of the Prandtl number, secondary wave amplitude ratio and width of the channel.
机译:通过电流振荡流的控制方程进行了简化,使用合适的无量纲的量和固定的和移动的帧坐标之间的转换关系。通过使用具有小波数的常规扰动方法,分析所获得的等式系统。在该研究中,使用改性的非尺寸量,使得所得到的方程中的流体压力取决于轴向和垂直坐标。目前的研究比以前的研究更加逼真,并且通常仅在轴向坐标中被认为流体压力的研究。一种新方法使作者能够找到一种分析形式的流体压力,而先前的研究没有能够找到它,但只发现了压力梯度。获得用于流功能,电势功能和温度分布的分析表达式。结果表明,电势函数随着普朗特数,次级波幅度比和信道宽度的增加而降低。

著录项

  • 作者

    M.H. Haroun;

  • 作者单位
  • 年度 2020
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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