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Flow of a Casson fluid through a stenosed artery subject to periodic body acceleration

机译:通过狭窄的动脉流过令人抑制的动脉,经过周期性的机身加速度

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The pulsatile flow of blood through a stenosed artery under the influence of external periodic body acceleration is studied. The effect of non-Newtonian nature of blood in small blood vessels has been taken into account by modeling blood as a Casson fluid. The non-linear coupled equations governing the flow are solved using perturbation analysis assuming that the Womersley frequency parameter is small which is valid for physiological situations in small blood vessels. The effect of pulsatility, stenosis, body acceleration, yield stress of the fluid and pressure gradient on the yield plane locations, velocity distribution, flow rate, shear stress and frictional resistance are investigated. It is noticed that the effect of yield stress and stenosis is to reduce flow rate and increase flow resistance. The impact of body acceleration is to enhance the flow rate and reduces resistance to flow.
机译:研究了在外部周期性机体加速度的影响下通过狭窄动脉脉动血液流动。通过将血液造型为腺体流体,考虑了小血管中血液中血液中的非牛顿性质的影响。使用扰动分析解决了控制流程的非线性耦合方程,假设Womersley频率参数很小,这对于小血管中的生理情况有效。研究了脉动性,狭窄,体加速度,流体和压力梯度对屈服平面位置,速度分布,流速,剪切应力和摩擦阻力的影响。注意到屈服应力和狭窄的效果是降低流速并增加流动阻力。身体加速的影响是提高流速并降低流量的抵抗力。

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