首页> 外文期刊>Journal of mechanics in medicine and biology >EFFECT OF INDUCED MAGNETIC FIELD ON BLOOD FLOW THROUGH A CONSTRICTED CHANNEL: AN ANALYTICAL APPROACH
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EFFECT OF INDUCED MAGNETIC FIELD ON BLOOD FLOW THROUGH A CONSTRICTED CHANNEL: AN ANALYTICAL APPROACH

机译:感应磁场对通过约束通道的血流的影响:一种解析方法

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摘要

A nonlinear micropolar fluid model is considered with a view to examine the effect of induced magnetic field on blood flow through a constricted channel. We assume that the flow is unidirectional and flowing through a narrow channel, where the Reynolds number is less than unity such as in microvessels. Under the low Reynolds number approximation, the analytical expressions for axial velocity, micro-rotation component, axial pressure gradient, axial induced magnetic field, resistance to flow and wall shear stress have been obtained. The flow characteristic phenomena have been analyzed by taking valid numerical values of the parameters, which are applicable to blood rheology. The present analytical solutions have been compared with the analytical solutions of Hartmann (Hartmann J. Hg-Dynamics-I: Theory of the laminar flow of an electrically conductive liquid in a homogeneous magnetic field, Mathematisk-Fysiske Meddeleser XV:6, 1937) and found excellent agreement. The study shows that with the increasing values of the magnetic field strength decreases the axial velocity at the central line of the channel, while the flow is accelerating in the vicinity of the channel wall. The induced magnetic field has an increasing effect on the micro-rotation component, which in turn produces increasing pressure gradient. The electrical response of the microcirculation increases with the increase in the Hartmann number and the stenosis height. Thus, the resultant flow predictions presented here may be useful for the potential applications in cardiovascular engineering.
机译:考虑非线性微极性流体模型,以检查感应磁场对通过狭窄通道的血流的影响。我们假设流量是单向的,并且流经狭窄的通道,在该通道中,雷诺数小于单位,例如在微容器中。在低雷诺数近似下,获得了轴向速度,微旋转分量,轴向压力梯度,轴向感应磁场,抗流动性和壁剪应力的解析表达式。通过采用适用于血液流变学的有效参数值来分析流动特征现象。本分析解决方案已与Hartmann的分析解决方案进行了比较(Hartmann J. Hg-Dynamics-I:在均匀磁场中导电液体的层流理论,Mathematisk-Fysiske Meddeleser XV:6,1937),以及找到了极好的协议。研究表明,随着磁场强度值的增加,通道中心线处的轴向速度会降低,而在通道壁附近的流动正在加速。感应磁场对微旋转分量的影响增加,进而使压力梯度增加。微循环的电响应随Hartmann数和狭窄高度的增加而增加。因此,此处介绍的流量预测结果可能对心血管工程的潜在应用有用。

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