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首页> 外文期刊>European Physical Journal Plus >Modelling and simulation of temperature and concentration dispersion in a couple stress nanofluid flow through stenotic tapered arteries
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Modelling and simulation of temperature and concentration dispersion in a couple stress nanofluid flow through stenotic tapered arteries

机译:狭窄锥动脉互胁迫纳米流体流动温度和浓度分散的建模与仿真

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摘要

A couple stress fluid model with the suspension of silver nanoparticles is proposed in order to investigate theoretically the natural convection of temperature and concentration. In particular, the flow is considered in an artery with an obstruction wherein the rheology of blood is taken as a couple stress fluid. The effects of the permeability of the stenosis and the treatment procedure involving a catheter are also considered in the model. The obtained non-linear momentum, temperature and concentration equations are solved using the homotopy perturbation method. Nanoparticles and the two viscosities of the couple stress fluid seem to play a significant role in the flow regime. The pressure drop, flow rate, resistance to the fluid flow and shear stress are computed and their effects are analyzed with respect to various fluids and geometric parameters. Convergence of the temperature and its dependency on the degree of deformation is effectively depicted. It is observed that the Nusselt number increases as the volume fraction increases. Hence magnification of molecular thermal dispersion can be achieved by increasing the nanoparticle concentration. It is also observed that concentration dispersion is greater for severe stenosis and it is maximum at the first extrema. The secondary flow of the axial velocity in the stenotic region is observed and is asymmetric in the tapered artery. The obtained results can be utilized in understanding the increase in heat transfer and enhancement of mass dispersion, which could be used for drug delivery in the treatment of stenotic conditions.
机译:提出了一种具有银纳米颗粒的悬浮液的耦合压力流体模型,以便了解温度和浓度的自然对流。特别地,在动脉中考虑流动,其阻塞,其中血液的流变是作为夫妇应激流体。在模型中也考虑了狭窄性渗透性和涉及导管的治疗程序的影响。使用同型扰动法解决了所得的非线性动量,温度和浓度方程。纳米粒子和夫妻应激流体的两个粘度似乎在流动方案中发挥着重要作用。计算压降,流速,对流体流动和剪切应力的抗性,并且它们相对于各种流体和几何参数分析它们的效果。有效地描绘了温度及其对变形程度的依赖性的收敛性。观察到,随着体积分数的增加,尤塞格数增加。因此,通过增加纳米颗粒浓度,可以实现分子热分散的放大率。还观察到,对于严重的狭窄,浓度分散较大,并且在第一个极值处是最大的。观察到狭窄区域中的轴向速度的二次流动并在锥形动脉中不对称。所得结果可用于理解传热和质量分散增强的增加,可用于治疗狭窄条件的药物递送。

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