Qayyum Mubashir, Afzal Sidra, Saeed Syed Tauseef, Akgül Ali, Riaz Muhammad Bilal
Department of Sciences and Humanities, National University of Computer and Emerging Sciences, Lahore, Pakistan.
Siirt University, Art and Science Faculty, Department of Mathematics, 56100 Siirt, Turkey.
Heliyon. 2023 May 26;9(6):e16578. doi: 10.1016/j.heliyon.2023.e16578. eCollection 2023 Jun.
This study is focused on modeling and simulations of hybrid nanofluid flow. Uranium dioxide nanoparticles are hybrid with copper , copper oxide and aluminum oxide while considering blood as a base fluid. The blood flow is initially modeled considering magnetic effect, non-linear thermal radiation and chemical reactions along with convective boundaries. Then for finding solution of the obtained highly nonlinear coupled system we propose a methodology in which q-homotopy analysis method is hybrid with Galerkin and least square Optimizers. Residual errors are also computed in this study to confirm the validity of results. Analysis reveals that rate of heat transfer in arteries increases up to 13.52 Percent with an increase in volume fraction of while keeping volume fraction of fixed to 1% in a base fluid (blood). This observation is in excellent agreement with experimental result. Furthermore, comparative graphical study of and for increasing volume fraction is also performed keeping volume fraction fixed. Investigation indicates that has the highest rate of heat transfer in blood when compared with and . It is also observed that thermal radiation increases the heat transfer rate in the current study. Furthermore, chemical reaction decreases rate of mass transfer in hybrid blood nanoflow. This study will help medical practitioners to minimize the adverse effects of by introducing hybrid nano particles in blood based fluids.
本研究聚焦于混合纳米流体流动的建模与模拟。在将血液视为基液的情况下,二氧化铀纳米颗粒与铜、氧化铜和氧化铝混合。最初在考虑磁效应、非线性热辐射、化学反应以及对流边界的情况下对血液流动进行建模。然后,为了求解所得到的高度非线性耦合系统,我们提出了一种方法,即将q - 同伦分析方法与伽辽金法和最小二乘优化器相结合。本研究还计算了残差以确认结果的有效性。分析表明,在基液(血液)中,当固定 的体积分数为1%时,随着 体积分数的增加,动脉中的传热速率提高了13.52%。这一观察结果与实验结果高度吻合。此外,在固定 体积分数的情况下,还对 和 随体积分数增加的情况进行了对比图形研究。研究表明,与 和 相比, 在血液中的传热速率最高。还观察到在本研究中热辐射提高了传热速率。此外,化学反应降低了混合血液纳米流中的传质速率。本研究将有助于医学从业者通过在血液基流体中引入混合纳米颗粒来将 的不利影响降至最低。