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Heat transfer of TiO_2- EG nanoliquid with active and passive control of nanoparticles subject to nonlinear Boussinesq approximation

机译:TiO_2-例如纳米喹吖的热传递,其具有非线性Boussinesq近似的纳米颗粒的主动和被动控制

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In this study, the buoyancy-driven two-dimensional flow of a nanoliquid past a vertical plate subject to quadratic Rosseland thermal radiation and quadratic thermal convection (quadratic Boussinesq approximation) is investigated. The working liquid is ethylene glycol containing titania nanoparticles. The consequences of aggregation of nanoparticles are included using the modified Maxwell-Bruggeman and Krieger-Dougherty models for thermal conductivity and viscosity respectively. The analysis is performed under active and passive control of nanoparticles (NPs). To simulate the nanoliquid, the modified Buongiorno model is used which includes effective thermophysical properties and two significant slip mechanisms (nanoparticle random motion and thermopho-resis). The phenomenon of physical flow is demonstrated with the help of a partial differential equation (PDE) system that uses conservation laws and the thermophysical properties of nanoparticles. Nonlinear PDEs related to the nanoliquid heat transport are transformed into ordinary two-point BVP (boundary value problem)and the obtained system has been solved numerically. It is found that the nanoparticle aggregation and quadratic thermal radiation aspects enhance the temperature field. Furthermore, the quadratic Boussinesq approximation aspect was found to hasten the heat transport rate at the plate.
机译:在这项研究中,研究了纳米喹吖的浮力驱动的二维流动经过二次升温热辐射和二次热对流(二次肱峰QUADIMATION)的垂直板。工作液是含有二氧化钛纳米颗粒的乙二醇。纳米颗粒聚集的后果包括使用改进的Maxwell-Bruggeman和Krieger-Dougherty模型分别用于热导率和粘度。在纳米颗粒(NPS)的主动和被动控制下进行分析。为了模拟纳米喹吖啶,使用改性的Buongiorno模型,其包括有效的热物理性质和两种显着的滑移机制(纳米粒子随机运动和嗜热反应)。借助于使用纳米颗粒的局部微分方程(PDE)系统的局部微分方程(PDE)系统来证明物理流动现象。与纳米替代热传输相关的非线性PDE被转化为普通的两点BVP(边值问题),并且在数值上已经解决了所获得的系统。发现纳米粒子聚集和二次热辐射方面增强了温度场。此外,发现二次BoussinesQ近似方面用于加速板处的热传输速率。

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