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Computational modeling of MHD flow of blood and heat transfer enhancement in a slowly varying arterial segment

机译:缓慢变化的动脉节段中MHD血液流动和传热增强的计算模型

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摘要

We have developed a computational model to investigate the unsteady flow of blood and heat transfer characteristics through a sinusoidally varying arterial segment under magnetic environment. Direct numerical simulation has been performed by employing stream function-vorticity formulation followed by a coordinate transformation. The transformed governing equations have been solved using the finite difference scheme by developing Peaceman-Rachford Alternating Direction Implicit (P-R ADI) method. The results show that the rate of heat transfer diminishes with a rise in the magnetic field strength, whereas the trait is reversed in the case of Reynolds number and amplitude of wavy vessel. The skin-friction is high for greater values of amplitude of oscillation of arterial wall. An interesting result can be documented that the Nusselt number has decreasing effect with magnetic field strength at higher Reynolds number, while it increases when Reynolds number is low.
机译:我们已经开发了一个计算模型,以研究在磁性环境下通过正弦变化的动脉段的血液和热传递特性的非恒定流动。通过采用流函数涡度公式,然后进行坐标变换,进行了直接数值模拟。通过开发Peaceman-Rachford交替方向隐式(P-R ADI)方法,使用有限差分方案求解了转换后的控制方程。结果表明,传热的速率随着磁场强度的增加而减小,而在雷诺数和波浪形容器的情况下,这种特性是相反的。对于较大的动脉壁振荡幅度,皮肤摩擦较高。有趣的结果可以证明,当雷诺数较高时,努塞尔数随磁场强度的增加而降低,而当雷诺数较低时,努塞尔特数随磁场强度的增加而减小。

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