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Pulsatile Flow of a Two-Fluid Model for Blood Flow through Arterial Stenosis

机译:通过动脉狭窄的血流两流体模型的脉动流

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摘要

Pulsatile flow of a two-fluid model for blood flow through stenosed narrow arteries is studied through a mathematical analysis. Blood is treated as two-phase fluid model with the suspension of all the erythrocytes in the as Herschel-Bulkley fluid and the plasma in the peripheral layer as a Newtonian fluid. Perturbation method is used to solve the system of nonlinear partial differential equations. The expressions for velocity, wall shear stress, plug core radius, flow rate and resistance to flow are obtained. The variations of these flow quantities with stenosis size, yield stress, axial distance, pulsatility and amplitude are analyzed. It is found that pressure drop, plug core radius, wall shear stress and resistance to flow increase as the yield stress or stenosis size increases while all other parameters held constant. It is observed that the percentage of increase in the magnitudes of the wall shear stress and resistance to flow over the uniform diameter tube is considerably very low for the present two-fluid model compared with that of the single-fluid model of the Herschel-Bulkley fluid. Thus, the presence of the peripheral layer helps in the functioning of the diseased arterial system.
机译:通过数学分析研究了通过狭窄狭窄动脉的血流的两流体模型的脉动血流。将血液视为两相流体模型,将所有红细胞的悬浮液作为Herschel-Bulkley流体,将外围层的血浆作为牛顿流体。用摄动法求解非线性偏微分方程组。得到了速度,壁面剪应力,塞芯半径,流速和流动阻力的表达式。分析了这些流量随狭窄大小,屈服应力,轴向距离,脉动性和振幅的变化。发现当所有其他参数保持恒定时,压降,塞芯半径,壁切应力和流动阻力随屈服应力或狭窄尺寸的增加而增加。可以看出,与Herschel-Bulkley的单流体模型相比,本双流体模型的壁切应力和流经均匀直径管的阻力的幅度增加的百分比非常低。体液。因此,外围层的存在有助于患病的动脉系统的功能。

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  • 来源
    《Mathematical Problems in Engineering 》 |2010年第1期| p.40.1-40.26| 共26页
  • 作者

    D. S. Sankar;

  • 作者单位

    School of Mathematical Sciences, University Science Malaysia, 11800 Penang, Malaysia;

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  • 原文格式 PDF
  • 正文语种 eng
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