首页> 外文期刊>Journal of mechanics in medicine and biology >COUPLE STRESS FLUID MODEL FOR PULSATILE FLOW OF BLOOD IN A POROUS TAPERED ARTERIAL STENOSIS UNDER MAGNETIC FIELD AND PERIODIC BODY ACCELERATION
【24h】

COUPLE STRESS FLUID MODEL FOR PULSATILE FLOW OF BLOOD IN A POROUS TAPERED ARTERIAL STENOSIS UNDER MAGNETIC FIELD AND PERIODIC BODY ACCELERATION

机译:在磁场下多孔锥形动脉狭窄的血液血液血液血液流动胁迫流体模型及周期性机体加速度

获取原文
获取原文并翻译 | 示例
           

摘要

In this paper, a magnetic and non-Newtonian fluid model for pulsatile flow of blood with periodic body acceleration has been investigated by adopting Laplace transform and finite Hankel transform. A closed form of analytic solution is obtained for physiologically important quantities such as velocity profile, flow rate, wall shear stress and flow resistance. Effects of different physical parameters reflecting couple stress parameter, Darcy number, Hartman number, tapering angle (divergent tapered tube or convergent tapered tube), shape stenosis parameter and amplitude of periodic acceleration on wall shear stress and flow resistance have been emphasized. For any value of taper angle (zeta) and stenotic height (delta(S)), it is pertinent to point out here that the wall shear stress is less in the case of flow through the asymmetric stenosed tube as compared to the case of flow through the symmetric stenosed tube when one is in the up-stream of flow region, but it is of opposite behavior as one moves in the down-stream of flow region. It is important to note that the flow resistance increases significantly and more nonlinearly with the increase in the axial distance in the case of flow through a converging tapered artery with stenosis as compared to that of the same flow through a stenosed artery. The size of trapping bolus becomes larger for the flow of couple stress fluid through a converging tapered arterial stenosis than that of the same flow through a stenosed artery. Another important result is that as compared to the case of Newtonian fluid, the couple stress fluid behaviour plays a key role in increasing the size of trapping bolus. This investigation puts forward important observations that the asymmetric nature of stenosis considered plays a predominant role in reducing the flow resistance in the case of diseased blood vessel and the flow resistance is higher for the case of couple stress fluid than that of Newtonian fluid. Finally, some applications of the present model have been briefly discussed.
机译:本文通过采用拉普拉斯变换和有限的嗜烟凝块,研究了具有周期性机身加速的脉动流动血液和非牛顿流体模型。在生理学上重要的数量,例如速度曲线,流速,壁剪切应力和流动阻力,获得封闭形式的分析溶液。不同物理参数反射耦合应力参数,达西数,哈特曼数,逐屈角(发散锥形管或会聚锥形管),形状狭窄参数和周期性加速度的振缩参数和流动阻力的幅度。对于锥角(Zeta)和狭窄高度的任何值(Delta(S)),它与这里指出的是,与流动的情况相比,壁剪切应力在流过不对称狭窄的管的情况下当一个在流动区域的上游时,通过对称的狭窄管,但是当在流动区域的下游移动时,它具有相反的行为。重要的是要注意,由于通过狭窄的动脉相同的流动,流动阻力在流过狭窄的情况下,流动阻力随着狭窄的情况而增加,流动阻力随着狭窄的情况而增加而增加。捕获推注的尺寸对于耦合锥形动脉狭窄的耦合应力流体的流动比通过狭窄的动脉的流动流动的流动变大。另一个重要结果是与牛顿流体的情况相比,这对夫妻的压力流体行为在增加捕获推注的尺寸时起着关键作用。本调查提出了重要的观察,即所考虑的狭窄的不对称性质在降低患病血管的情况下在降低患者血管的情况下发挥主要作用,并且对于夫妇液体的情况而言,流动性更高。最后,已经简要讨论了本模型的一些应用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号