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首页> 外文期刊>Applied Mathematics >Stationary Flow of Blood in a Rigid Vessel in the Presence of an External Magnetic Field: Considerations about the Forces and Wall Shear Stresses
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Stationary Flow of Blood in a Rigid Vessel in the Presence of an External Magnetic Field: Considerations about the Forces and Wall Shear Stresses

机译:外部磁场作用下刚性容器中血液的固定流动:关于力和壁剪应力的考虑

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The magnetohydrodynamics laws govern the motion of a conducting fluid, such as blood, in an externally applied static magnetic field B0. When an artery is exposed to a magnetic field, the blood charged particles are deviated by the Lorentz force thus inducing electrical currents and voltages along the vessel walls and in the neighboring tissues. Such a situation may occur in several biomedical applications: magnetic resonance imaging (MRI), magnetic drug transport and targeting, tissue engineering… In this paper, we consider the steady unidirectional blood flow in a straight circular rigid vessel with non-conducting walls, in the presence of an exterior static magnetic field. The exact solution of Gold (1962) (with the induced fields not neglected) is revisited. It is shown that the integration over a cross section of the vessel of the longitudinal projection of the Lorentz force is zero, and that this result is related to the existence of current return paths, whose contributions compensate each other over the section. It is also demonstrated that the classical definition of the shear stresses cannot apply in this situation of magnetohydrodynamic flow, because, due to the existence of the Lorentz force, the axisymmetry is broken.
机译:磁流体动力学定律控制外部施加的静磁场B0中的导电流体(例如血液)的运动。当动脉暴露于磁场中时,带血粒子会因洛伦兹力而偏离,从而沿血管壁和邻近组织感应出电流和电压。这种情况可能发生在几种生物医学应用中:磁共振成像(MRI),磁性药物运输和靶向,组织工程……在本文中,我们考虑了具有非导电壁的笔直圆形刚性血管中的稳定单向血流。外部静磁场的存在。重新讨论了Gold(1962)的精确解(不忽略感应场)。结果表明,洛伦兹力的纵向投影在血管横截面上的积分为零,并且该结果与电流返回路径的存在有关,电流返回路径的贡献在该截面上相互补偿。还证明了剪切应力的经典定义不适用于这种磁流体流,因为由于存在洛伦兹力,轴对称性被破坏了。

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