Comprehensive study of tri-hybrid nanofluid flow in a vertical channel with Cu, Al2O3, and TiO2 nanoparticles via fractional dynamics and non-local kernel approach

Qasim Ali, A. Awan, Rajai S. Alassar, Muhammad Amir, Usman Younas, Muhammad Farman
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Abstract

Nanofluids and hybrid nanofluids enhance the transfer of heat with low nanoparticle concentration. Tri-hybrid nanofluids combine different nanoparticles (NPs) to further increase the performance of base fluids. Tri-hybrid nanofluids have significant uses in several industries, including electronic cooling, heat transport, biomedical engineering as well as energy storage systems. This study investigates the thermal performance of tri-hybrid nanofluid in the existence of a magnetic field and porous saturated space along with copper (Cu), aluminium oxide (Al2O3), and titanium dioxide (TiO2) NPs dispersed in base fluid, i.e. water (H2O) flowing through a vertical channel by convection. The resultant partial differential equations based on Atangana–Baleanu time-fractional derivative (having non-singular and non-local kernel) are solved using the Laplace transform along with the appropriate physical conditions. The Stehfest as well as Tzou’s numerical approaches are then utilized to compute the Laplace inverse, to check the validity of obtained solutions and to get the graphical representations of, concentration, energy, and velocity fields. The results show that tri-hybrid nanofluids have advanced thermal as well as momentum characteristics compared to nanofluids and hybrid nanofluids.
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通过分数动力学和非局部核方法全面研究含有铜、Al2O3 和 TiO2 纳米粒子的垂直通道中的三混合纳米流体流动
纳米流体和混合纳米流体能以较低的纳米颗粒浓度增强热量的传递。三混合纳米流体结合了不同的纳米粒子(NPs),进一步提高了基础流体的性能。三混合纳米流体在多个行业都有重要用途,包括电子冷却、热传输、生物医学工程以及储能系统。本研究探讨了在存在磁场和多孔饱和空间的情况下,铜(Cu)、氧化铝(Al2O3)和二氧化钛(TiO2)纳米粒子分散在基质流体(即以对流方式流经垂直通道的水(H2O))中的三混合纳米流体的热性能。基于 Atangana-Baleanu 时分导数(具有非奇异和非局部内核)的偏微分方程利用拉普拉斯变换和适当的物理条件进行求解。然后利用 Stehfest 和 Tzou 的数值方法计算拉普拉斯逆,检查所得解的有效性,并获得浓度场、能量场和速度场的图形表示。结果表明,与纳米流体和混合纳米流体相比,三混合纳米流体具有先进的热特性和动量特性。
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