首页> 外文期刊>Applied Mathematical Modelling >Pulsatile flow of Herschel-Bulkley fluid through catheterized arteries - A mathematical model
【24h】

Pulsatile flow of Herschel-Bulkley fluid through catheterized arteries - A mathematical model

机译:Herschel-Bulkley液体通过导管动脉的脉动流动-数学模型

获取原文
获取原文并翻译 | 示例
       

摘要

The pulsatile flow of blood through catheterized artery has been studied in this paper by modeling blood as Herschel-Bulkley fluid and the catheter and artery as rigid coaxial circular cylinders. The Herschel-Bulkley fluid has two parameters, the yield stress θ and the power index n. Perturbation method is used to solve the resulting quasi-steady nonlinear coupled implicit system of differential equations. The effects of catheterization and non-Newtonian nature of blood on yield plane locations, velocity, flow rate, wall shear stress and longitudinal impedance of the artery are discussed. The existence of two yield plane locations is investigated and their dependence on yield stress θ, amplitude A, and time t are analyzed. The width of the plug core region increases with increasing value of yield stress at any time. The velocity and flow rate decrease, whereas wall shear stress and longitudinal impedance increase for increasing value of yield stress with other parameters held fixed. On the other hand, the velocity, flow rate and wall shear stress decrease but resistance to flow increases as the catheter radius ratio (ratio of catheter radius to vessel radius) increases with other parameters fixed. The results for power law fluid, Newtonian fluid and Bingham fluid are obtained as special cases from this model.
机译:通过将血液建模为Herschel-Bulkley流体,并将导管和动脉建模为刚性同轴圆柱体,研究了通过导管动脉的血液脉动流。 Herschel-Bulkley流体具有两个参数,即屈服应力θ和功率指数n。摄动法被用来解决由此产生的拟稳态非线性耦合隐式微分方程组。讨论了导管插入术和血液的非牛顿性质对屈服平面位置,速度,流速,壁切应力和动脉纵向阻抗的影响。研究了两个屈服平面位置的存在,并分析了它们对屈服应力θ,振幅A和时间t的依赖性。插芯区域的宽度随时随屈服应力值的增加而增加。在保持其他参数不变的情况下,随着屈服应力值的增加,速度和流速减小,而壁剪应力和纵向阻抗增大。另一方面,在其他参数固定的情况下,随着导管半径比(导管半径与血管半径之比)的增加,速度,流速和壁切应力降低,但流动阻力增加。从该模型中获得特殊情况下的幂律流体,牛顿流体和宾汉流体的结果。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号