首页> 外文期刊>International journal of biomathematics >Gravity flow of pulsatile blood through a porous medium under periodic body acceleration and magnetic field in an inclined tube
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Gravity flow of pulsatile blood through a porous medium under periodic body acceleration and magnetic field in an inclined tube

机译:在周期性的人体加速度和倾斜管中的磁场作用下,脉动血在多孔介质中的重力流

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摘要

Mathematical model for the pulsatile blood flow through a porous medium under the influence of periodic body acceleration for gravity flow along an inclined tube by considering blood as a couple stress, incompressible and electrically conducting fluid in the presence of magnetic field has been investigated. Analytical expressions for axial velocity, flow rate, fluid acceleration and shear stress are obtained by applying the Laplace and finite Hankel's transforms. The velocity profiles for various values of Hartmann number, couple stress parameters and the angle of inclination are shown graphically. Also the effects of body acceleration, Womerseley parameters and permeability parameters have been discussed. The results obtained in the present mathematical model for different values of the parameters involved in the problem show that the flow of blood is influenced by the effect of magnetic field, the porous medium and the inclination angle. The present model is compared with the other existing models. Through this theoretical investigation, the applications of magnetic field have also been indicated in the field of biological, biomedical and engineering sciences.
机译:通过考虑血液作为偶应力,研究了周期性的人体加速度在重力作用下沿倾斜管流动的脉动性血液流经多孔介质的数学模型,这种磁场在存在磁场的情况下不可压缩且导电。通过应用拉普拉斯和有限汉克尔变换获得轴向速度,流速,流体加速度和剪切应力的解析表达式。用图形显示了哈特曼数,耦合应力参数和倾角的各种值的速度曲线。还讨论了身体加速度,Womerseley参数和渗透性参数的影响。在当前数学模型中针对涉及该问题的参数的不同值所获得的结果表明,血流受磁场,多孔介质和倾角的影响。将本模型与其他现有模型进行比较。通过这一理论研究,在生物,生物医学和工程科学领域也已指出了磁场的应用。

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