Srivastava Neetu
Department of Mathematics, Amrita Vishwa Vidyapeetham (University), Karnataka 560 035, India.
J Biophys. 2014;2014:797142. doi: 10.1155/2014/797142. Epub 2014 Feb 25.
Analytical investigation of MHD blood flow in a porous inclined stenotic artery under the influence of the inclined magnetic field has been done. Blood is considered as an electrically conducting Newtonian fluid. The physics of the problem is described by the usual MHD equations along with appropriate boundary conditions. The flow governing equations are finally transformed to nonhomogeneous second-order ordinary differential equations. This model is consistent with the principles of magnetohydrodynamics. Analytical expressions for the velocity profile, volumetric flow rate, wall shear stress, and pressure gradient have been derived. Blood flow characteristics are computed for a specific set of values of the different parameters involved in the model analysis and are presented graphically. Some of the obtained results show that the flow patterns in converging region (ξ < 0), diverging region (ξ > 0), and nontapered region (ξ = 0) are effectively influenced by the presence of magnetic field and change in inclination of artery as well as magnetic field. There is also a significant effect of permeability on the wall shear stress as well as volumetric flow rate.
对倾斜磁场作用下多孔倾斜狭窄动脉内的磁流体动力学血液流动进行了分析研究。血液被视为一种导电牛顿流体。该问题的物理过程由通常的磁流体动力学方程以及适当的边界条件来描述。流动控制方程最终被转化为非齐次二阶常微分方程。该模型符合磁流体动力学原理。推导了速度分布、体积流量、壁面剪应力和压力梯度的解析表达式。针对模型分析中涉及的不同参数的一组特定值计算了血液流动特性,并以图形方式呈现。一些所得结果表明,收敛区域(ξ < 0)、发散区域(ξ > 0)和非锥形区域(ξ = 0)中的流动模式受到磁场的存在、动脉倾斜度以及磁场变化的有效影响。渗透率对壁面剪应力以及体积流量也有显著影响。