达西-福克海默空间中混合铁流体经过指数拉伸片的停滞-点滑动流动

Sushil Prasad, Shilpa Sood, Archie Thakur
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摘要

研究目的本文详细分析了达西-福克海默混合纳米流体在存在滑移条件的混合对流情况下流过指数拉伸薄片的情况,以及流体流动的不同相关参数对速度和温度曲线的影响。研究方法为了产生混合纳米流体,考虑了两种磁性纳米粒子:磁铁矿( )和钴铁氧体( )。将边界层耦合偏微分方程转换为非线性常微分方程系统,然后使用 Matlab 软件中的 bvp4c 求解器进行数值求解。进行了全面的参数分析,以显示对流参数、速度比参数、孔隙度参数、福克海默参数、固体体积分数、速度滑移和温度跃迁对流体速度和温度曲线以及边界层内局部表皮摩擦系数和局部努塞尔特数的影响。研究结果温度场厚度在Ⅳ、Ⅴ、Ⅵ和Ⅶ值较高时增大,而在Ⅷ、Ⅸ和Ⅹ值较低时减小。随着Ⅳ、Ⅴ、Ⅵ、Ⅶ、Ⅷ、Ⅸ、Ⅹ值的增加,局部表皮摩擦系数减小。 新颖性:本研究的新颖之处在于分析了达西-福克海默混合纳米流体在存在滑移条件的混合对流情况下穿过指数拉伸薄片的流动情况。在本研究中,水被用作基础流体,磁铁矿和钴铁氧体被用作混合纳米粒子。关键词:混合纳米流体混合纳米流体 指数拉伸片 混合对流 速度滑移 温度跃迁
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Stagnation-Point Slip Flow of Hybrid Ferrofluid Past Exponentially Stretching Sheet in Darcy-Forchheimer Space
Objectives: The present article provides a detailed analysis on the Darcy-Forchheimer hybrid nanofluids flow past an exponentially stretching sheet in the presence of mixed convection with slip conditions and the impacts of different relevant parameters of the fluid flow for velocity and temperature profiles. Methods: In order to create hybrid nanofluids, two magnetic nanoparticles, magnetite ( ) and cobalt ferrite ( ), are taken into consideration. The governing boundary layer coupled partial differential equations are transformed into a system of non-linear ordinary differential equations, which are then solved numerically by using the bvp4c solver available in the Matlab software. A comprehensive parametric analysis has been performed to show the effects of the convective parameter, velocity ratio parameter, porosity parameter, forchheimer parameter, solid volume fractions of and , velocity slip and temperature jump on the fluid velocity and temperature profiles as well as the local skin-friction coefficient and local Nusselt number within the boundary layer. Findings: For higher values of , , , , the velocity field grows, and it declines for , Fr, and A. The temperature field thickness is higher for , Fr, , and A, while decreases for and . The local skin friction coefficient diminishes as rise in the values of , , , Fr, , , A and B. The local Nusselt number shows increasing behaviour for increasing amount of , , , Fr, , , A and B. Novelty: The novelty of the current work is the analysis of the flow of Darcy-Forchheimer hybrid nanofluids across an exponentially stretched sheet in the presence of mixed convection with slip conditions. Here, water is used as base fluid and magnetite, cobalt ferrite being used as hybrid nanoparticles for the present study. Keywords: Hybrid nanofluids, Exponentially stretching sheet, Mixed convection, Velocity slip, Temperature jump
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