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首页> 外文期刊>Journal of Energy Engineering >Peristaltic Flow of Hyperbolic Tangent Fluid in a Diverging Tube with Heat and Mass Transfer
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Peristaltic Flow of Hyperbolic Tangent Fluid in a Diverging Tube with Heat and Mass Transfer

机译:双曲正切流体在传热传质管中的蠕变流动

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摘要

The writers have studied peristaltic flow of a hyperbolic tangent fluid in a diverging tube. The flow was investigated in a wave frame of reference moving with the velocity of the wave. The governing equations of hyperbolic tangent fluid in cylindrical coordinates were modeled. Heat and mass transfer phenomena were taken into consideration. The resulting nonlinear momentum, energy, and mass equations were simplified using long wavelength and low Reynolds number approximations. The resulting problem was solved using two analytical techniques, a regular perturbation method in terms of a variant of the Weissenberg number, and a homotopy analysis method. A graphical comparison of both of the solutions is presented for velocity, temperature, and concentration profiles. The expressions for axial velocity, temperature, mass concentration, heat and mass transfer coefficients, and axial pressure gradient were obtained, and the effects of various emerging parameters on these flow characteristics are illustrated graphically. The writers graphically demonstrate the numerical results for the pressure rise and frictional force for different waveforms (sinusoidal, multi-sinusoidal, triangular, square, and trapezoidal). Trapping phenomena were taken into consideration when plotting the streamlines pattern.
机译:作者研究了双曲正切流体在发散管中的蠕动流。在参考波随波速移动的波框中研究了流动。建立了圆柱坐标系下双曲正切流体的控制方程。考虑了传热和传质现象。使用长波长和低雷诺数近似值简化了所得的非线性动量,能量和质量方程。使用两种分析技术解决了所产生的问题,一种是针对Weissenberg数变体的常规摄动法,另一种是同态分析法。给出了两种溶液的速度,温度和浓度曲线的图形比较。得到了轴向速度,温度,质量浓度,传热和传质系数以及轴向压力梯度的表达式,并用图形说明了各种新兴参数对这些流动特性的影响。作者以图形方式展示了不同波形(正弦曲线,多正弦曲线,三角形,正方形和梯形)的压力升高和摩擦力的数值结果。在绘制流线样式时要考虑到陷井现象。

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