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Physical Significance of Rotation and Hall Current Effects on Hemodynamic Physiological Jeffery Fluid with Porous Medium Through a Tapered Channel

机译:通过锥形通道对多孔介质血流动力学生理杰滤液对血流动力学生理杰烃流体的物理意义

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The aim of this research is to analyze the rotation and hall current effects on hemodynamic physiological Jeffery fluid through a tapered channel with porous medium. The pressure rise, velocity, pressure gradient, and fractional force are discussed analytically. An influence of varied governing parameters was illustrated diagrammatically with a set of figures. We identified that as we increase the rotation parameters, the velocity decreases. The velocity of the fluid enhances when we increase hall current parameter. We observed an increase in pumping rate in the retrograde pumping zone, the peristaltic pumping zone, the free pumping zone, and the co-pumping zone, pumping rate decreases when Q{top}- > 3 by an increase in rotation parameter.
机译:该研究的目的是通过具有多孔介质的锥形通道来分析对血流动力学生理杰滤液流体的旋转和霍尔电流影响。 分析讨论了压力升高,速度,压力梯度和分数力。 用一组图形方式示意性地示出了变化的控制参数的影响。 我们认为随着我们增加旋转参数,速度降低。 当我们增加大厅电流参数时,流体的速度增强。 我们观察到逆行泵送区,蠕动泵送区,自由泵区和共泵区的泵送速率的增加,当Q {顶部} - > 3增加旋转参数时,泵送速率降低。

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