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首页> 外文期刊>Applied Nanoscience >Blood flow of nanofluid through an artery with composite stenosis and permeable walls
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Blood flow of nanofluid through an artery with composite stenosis and permeable walls

机译:纳米流体通过具有复合狭窄和可渗透壁的动脉的血流

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This problem deals with the theoretical study of blood flow of nanofluid through composite stenosed arteries with permeable walls. The highly nonlinear momentum equations of nanofluid model are simplified by considering the mild stenosis case. Temperature and nanoparticle equations are coupled; so, we use homotopy perturbation method to calculate the solution of temperature and nanoparticle equations, while the exact solution has been calculated for velocity profile. Also, the expressions for flow impedance, pressure gradient and stream function are computed. These solutions depend on Brownian motion number N b,?thermophoresis number N t, local temperature Grashof number G r and local nanoparticle Grashof number B r. The effects of various emerging parameters are discussed through graphs for different values of interest.
机译:这个问题涉及到纳米流体通过具有可渗透壁的复合狭窄动脉的血流的理论研究。考虑到轻度狭窄的情况,简化了纳米流体模型的高度非线性动量方程。温度和纳米粒子方程是耦合的。因此,我们使用同伦摄动法来计算温度和纳米粒子方程的解,同时已经计算出速度分布的精确解。同样,计算出流阻,压力梯度和流函数的表达式。这些解决方案取决于布朗运动数N b ,热导数N t ,局部温度Grashof数G r 和局部纳米粒子Grashof数B < sub> r 。通过图表针对不同的关注值讨论了各种新兴参数的影响。

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