Linear and non-linear thermosolutal convection in a fluid saturated anisotropic porous layer with internal heating and thermal non-equilibrium model

IF 2.8 3区 工程技术 Q2 MECHANICS
A.A. Altawallbeh , M. Adi Sadiq , Mohammed Z. Swalmeh , Firas A. Alwawi , S. Saraheen
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引用次数: 0

Abstract

Influence of internal heating and anisotropy parameters on thermal non-equilibrium double diffusive convection in a couple stress fluid saturated anisotropic porous layer heated and salted from below is investigated analytically using linear and nonlinear stability theory. Normal mode technique is considered for linear theory, while the nonlinear theory is conducted based on minimal representation of truncated double Fourier series. The critical thermal Rayleigh number and wave number for stationary mode are obtained analytically using linear theory. Energy equation is represented by a two-field model, where the fluid and solid phase temperature fields are processed separately. Consequently, the thermal anisotropy parameter is considered for both fluid and solid phases. The onset criterion for stationary convection has derived analytically. The effect of anisotropy parameters, couple stress parameter, solute Rayleigh number, Vadasz number, Lewis number, inter-phase heat transfer coefficient, and internal heat parameter on the stationary and oscillatory convection, as well as heat and mass transfer are discussed and presented graphically. It is observed that increasing mechanical anisotropy parameter, thermal anisotropy parameter for fluid phase, and internal heat parameter destabilizes the system. On the other hand, increasing the values of couple stress parameter, inter-phase heat transfer coefficient, and concentration Rayleigh number are to stabilize the system. Thermal anisotropy parameter for solid phase has a stabilizing effect for stationary mode, while an opposite is observed for oscillatory one.
流体饱和各向异性多孔层内加热和热非平衡模型的线性和非线性热溶质对流
利用线性和非线性稳定性理论,分析了内部加热和各向异性参数对一对应力流体饱和各向异性多孔层热非平衡双扩散对流的影响。线性理论采用正态模态技术,非线性理论采用截断重傅立叶级数的最小表示。利用线性理论解析得到了稳态模态的临界热瑞利数和波数。能量方程采用双场模型表示,其中流体和固相温度场分别处理。因此,热各向异性参数考虑了流体和固相。对平稳对流的起始判据进行了解析推导。讨论了各向异性参数、耦合应力参数、溶质瑞利数、Vadasz数、Lewis数、相间换热系数和内热参数对静振荡对流和传热传质的影响,并给出了图形。结果表明,增大力学各向异性参数、液相热各向异性参数和内热参数会使体系失稳。另一方面,增大耦合应力参数、相间换热系数和浓度瑞利数有利于系统的稳定。固相热各向异性参数对稳态模式有稳定作用,而对振荡模式则相反。
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来源期刊
CiteScore
5.50
自引率
9.40%
发文量
192
审稿时长
67 days
期刊介绍: The International Journal of Non-Linear Mechanics provides a specific medium for dissemination of high-quality research results in the various areas of theoretical, applied, and experimental mechanics of solids, fluids, structures, and systems where the phenomena are inherently non-linear. The journal brings together original results in non-linear problems in elasticity, plasticity, dynamics, vibrations, wave-propagation, rheology, fluid-structure interaction systems, stability, biomechanics, micro- and nano-structures, materials, metamaterials, and in other diverse areas. Papers may be analytical, computational or experimental in nature. Treatments of non-linear differential equations wherein solutions and properties of solutions are emphasized but physical aspects are not adequately relevant, will not be considered for possible publication. Both deterministic and stochastic approaches are fostered. Contributions pertaining to both established and emerging fields are encouraged.
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