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Investigation of mixture fluid suspended by hybrid nanoparticles over vertical cylinder by considering shape factor effect

机译:通过考虑垂直圆筒悬浮在垂直圆柱上悬浮在垂直圆筒上悬浮的混合液的研究

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In this study, flow of a mixture of water and ethylene glycol (50-50%) with hybrid nanoparticles (MWCNT-Ag) over a vertical stretching cylinder has been investigated. In this research, the fluid passes through a porous media, while a magnetic field has been applied to the system. Furthermore, the effects of thermal radiation, viscous dissipation, and natural convection have been studied. As a novelty, the effects of different shape factors have been investigated. In the first step, the governing equations are extracted from partial differential equations and then converted to ordinary differential equations (ODE) using the similarity solution. In the next step, the fifth-order Runge-Kutta method has been used to solve the related ODEs. The effects of parameters such as magnetic field, radiation parameter, porosity parameter, nanofluid volume fraction, and nanofluid shape factor on dimensionless velocity and temperature profile have been presented for single and hybrid nanofluid. The results showed that at eta 5 for hybrid nanoparticles the shape factors lamina and spherical have the largest difference; lamina is smaller by 6%, also the results demonstrated that at eta with increasing Ha, the radial velocity reduced 9.68% for hybrid nanoparticles.
机译:在这项研究中,研究了水和乙二醇(50-50%)与杂化纳米颗粒(MWCNT-Ag)的混合物在垂直拉伸圆柱体上的流动。在本研究中,流体通过多孔介质,同时向系统施加磁场。此外,还研究了热辐射、粘性耗散和自然对流的影响。作为一项新技术,研究了不同形状因素的影响。在第一步中,从偏微分方程中提取控制方程,然后使用相似解将其转换为常微分方程(ODE)。下一步,采用五阶龙格-库塔法求解相关常微分方程。研究了磁场、辐射参数、孔隙率参数、纳米流体体积分数和纳米流体形状因子等参数对单一和混合纳米流体无量纲速度和温度分布的影响。结果表明,对于杂化纳米颗粒,在eta为5时,片状和球形的形状因子差异最大;薄层变小了6%,结果还表明,在eta下,随着Ha的增加,杂化纳米颗粒的径向速度降低了9.68%。

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