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首页> 外文期刊>Journal of magnetism and magnetic materials >Pulsatile flow of blood and heat transfer with variable viscosity under magnetic and vibration environment
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Pulsatile flow of blood and heat transfer with variable viscosity under magnetic and vibration environment

机译:在电磁和振动环境下,脉冲血流和可变粘度的热传递

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摘要

Unsteady flow of blood and heat transfer characteristics in the neighborhood of an overlapping constricted artery have been investigated in the presence of magnetic field and whole body vibration. The laminar flow of blood is taken to be incompressible and Newtonian fluid with variable viscosity depending upon temperature with an aim to provide resemblance to the real situation in the physiological system. The unsteady flow mechanism in the constricted artery is subjected to a pulsatile pressure gradient arising from systematic functioning of the heart and from the periodic body acceleration. The numerical computation has been performed using finite difference method by developing Crank-Ni-colson scheme. The results show that the volumetric flow rate, skin-friction and the rate of heat transfer at the wall are significantly altered in the downstream of the constricted region. The axial velocity profile, temperature and flow rate increases with increase in temperature dependent viscosity, while the opposite trend is observed in the case of skin-friction and flow impedance.
机译:在存在磁场和全身振动的情况下,已经研究了重叠收缩动脉附近血液的非恒定流动和传热特性。血液的层流被认为是不可压缩的,牛顿流体的粘度随温度而变化,目的是使之类似于生理系统中的真实情况。收缩动脉中的不稳定流动机制会受到由心脏的系统功能和周期性的身体加速度引起的脉动压力梯度的影响。通过开发Crank-Ni-colson方案,使用有限差分法进行了数值计算。结果表明,在狭窄区域的下游,壁面的体积流量,皮肤摩擦和传热速率发生了显着变化。轴向速度分布,温度和流速随温度依赖性粘度的增加而增加,而在皮肤摩擦和流动阻抗的情况下观察到相反的趋势。

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