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Nonlinear thermal convection in a layer of nanofluid under G-jitter and internal heating effects

机译:G抖动和内部加热作用下纳米流体层中的非线性热对流

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This paper deals with a mathematical model of controlling heat transfer in nanofluids. The time-periodic vertical vibrations of the system are considered to effect an external control of heat transport along with internal heating effects. A weakly non-linear stability analysis is based on the five-mode Lorenz model using which the Nusselt number is obtained as a function of the thermal Rayleigh number, nano-particle concentration based Rayleigh number, Prandtl number, Lewis number, modified diffusivity ratio, amplitude and frequency of modulation. It is shown that modulation can be effectively used to control convection and thereby heat transport. Further, it is found that the effect of internal Rayleigh number is to enhance the heat and nano-particles transport.Key words: Gravity modulation / Rayleigh–Bénard convection / Nanofluid / Internal heating / Nonlinear theory
机译:本文研究了控制纳米流体传热的数学模型。系统的时间周期垂直振动被认为是对热量传输的外部控制以及内部热效应。弱非线性稳定性分析基于五模式Lorenz模型,在该模型中,根据热瑞利数,基于纳米粒子浓度的瑞利数,普朗特数,路易斯数,修正的扩散率,调制的幅度和频率。结果表明,调制可以有效地用于控制对流,从而控制热传递。此外,还发现内部瑞利数的作用是增强热量和纳米粒子的传输。关键词:重力调制/瑞利-贝纳德对流/纳米流体/内部加热/非线性理论

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