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Pulsatile flow of blood through a stenosed tube: effect of periodic body acceleration and a magnetic field

机译:流经狭窄管的脉冲血流:周期性人体加速度和磁场的影响

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摘要

A proper understanding of the interactions of body acceleration and a magnetic field with blood flow could be useful in the diagnosis and treatment of some health problems. In the work reported in this paper we studied the pulsatile flow of blood through stenosed arteries, including the effects of body acceleration and a magnetic field. Blood is regarded as an electrically conducting, incompressible, couple-stress fluid in the presence of a magnetic field along the radius of the tube. The effects of the body acceleration and the magnetic field on the axial velocity, flow rate, and fluid acceleration were obtained analytically by use of the Hankel transform and the Laplace transform. Velocity variations under different conditions are shown graphically. The results have been compared with those from other theoretical models, and are in good agreement. Finally, our mathematical model gives a simple velocity expression for blood flow so it will help not only in the field of physiological fluid dynamics but will also help medical practitioners with elementary knowledge of mathematics.
机译:正确理解人体加速度和磁场与血流之间的相互作用可能有助于诊断和治疗某些健康问题。在本文报道的工作中,我们研究了通过狭窄动脉的脉动血流,包括身体加速度和磁场的影响。在沿管子半径存在磁场的情况下,血液被认为是一种导电的,不可压缩的,耦合应力流体。通过使用Hankel变换和Laplace变换分析性地获得了身体加速度和磁场对轴向速度,流速和流体加速度的影响。图形显示了不同条件下的速度变化。将结果与其他理论模型的结果进行了比较,并且吻合良好。最后,我们的数学模型给出了一个简单的血流速度表达式,因此它不仅在生理流体动力学领域有所帮助,而且还将帮助具有基本数学知识的医学从业者。

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