The stability of double-diffusive convection in an inclined porous channel saturated with nanofluid and influenced by a magnetic field

IF 5.4 2区 工程技术 Q1 ENGINEERING, AEROSPACE
D. Srinivasacharya, Nidhi Humnekar
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引用次数: 0

Abstract

The stability of nanofluid flow in a porous inclined channel with double diffusion and a magnetic field is investigated. The Darcy-Brinkman model is used to characterize fluid flow dynamics in porous medium. The analytical solutions are obtained for the unidirectional and completely developed flow. The perturbed state's generalized eigenvalue problem is obtained using normal mode analysis. This eigenvalue problem is then solved using the spectral method. Key findings indicate that critical wavenumber and critical Rayleigh number, which determine the onset of instability, vary with different parameters. Specifically, an increase in the permeability, Soret parameter, thermo-solutal Lewis number, and Dufour parameter enhances system stability. Conversely, the inclination of the channel contribute to destabilizing the flow. Notably, the flow is most unstable when the channel is oriented vertically.
饱和纳米流体的倾斜多孔通道中受磁场影响的双扩散对流稳定性
研究了纳米流体在双重扩散和磁场作用下多孔倾斜通道中的流动稳定性。采用Darcy-Brinkman模型来描述多孔介质中的流体流动动力学。得到了单向完全发育流的解析解。利用正态模态分析得到了扰动状态的广义特征值问题。然后用谱法求解该特征值问题。关键发现表明,决定不稳定起始的临界波数和临界瑞利数随参数的不同而变化。具体来说,渗透率、Soret参数、热溶质Lewis数和Dufour参数的增加增强了体系的稳定性。相反,通道的倾斜有助于破坏水流的稳定。值得注意的是,当通道垂直朝向时,流动最不稳定。
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来源期刊
CiteScore
7.50
自引率
5.70%
发文量
30
期刊介绍: Propulsion and Power Research is a peer reviewed scientific journal in English established in 2012. The Journals publishes high quality original research articles and general reviews in fundamental research aspects of aeronautics/astronautics propulsion and power engineering, including, but not limited to, system, fluid mechanics, heat transfer, combustion, vibration and acoustics, solid mechanics and dynamics, control and so on. The journal serves as a platform for academic exchange by experts, scholars and researchers in these fields.
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