Department of Mathematics, Jadavpur University, Kolkata 700032, India.
Department of Mathematics and Statistical Sciences, Botswana International University of Science and Technology, Palapye, Botswana.
Colloids Surf B Biointerfaces. 2021 Jan;197:111395. doi: 10.1016/j.colsurfb.2020.111395. Epub 2020 Oct 4.
We examine the effect of the Caputo-Fabrizio derivative of fractional-order model on the flow of blood in a porous tube having thermochemical properties under the magnetic and vibration mode. Blood is considered as the biviscosity non-Newtonian fluid having thermal radiation and chemical reaction properties to observe its impact on energy flux and mass flux gradients. We provided analytical solution via the Laplace, finite Hankel transform, and the corresponding inverse techniques. The study shows that blood velocity and temperature both decrease in ascending values of the fractional-order parameter as memory effect. The permeability of blood flow medium resists to drive the fluid fast. The chemical reaction causes an increase in wall shear stress. Dufour effect influences to rise in the Nusselt number. Thus the study may help to explore further information about the fractional-order model, adsorption of nutrients and their strong correlation with the surface chemistry and applied them in pathology.
我们研究了具有热化学性质的多孔管中分数阶模型的 Caputo-Fabrizio 导数对血流的影响,在磁场和振动模式下。血液被认为是具有热辐射和化学反应性质的双粘性非牛顿流体,以观察其对能量通量和质量通量梯度的影响。我们通过拉普拉斯变换、有限汉克尔变换和相应的逆技术提供了解析解。研究表明,随着记忆效应的增加,血液速度和温度都呈上升趋势。血流介质的渗透率阻碍了流体的快速流动。化学反应会导致壁面剪切应力增加。杜弗效应会导致努塞尔数增加。因此,该研究可能有助于进一步探索分数阶模型、营养物质的吸附及其与表面化学的强相关性,并将其应用于病理学。