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Convective instability analysis of couple-stress dielectric fluid saturated anisotropic porous medium with radiation effect

机译:辐射效应耦合耦合介电流体饱和各向异性多孔介质的对流稳定性分析

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Purpose - The effects of anisotropy and radiation cannot be considered negligible while investigating the stability of the fluid in convection. Hence, the purpose of this paper is to analyze how these effects could affect the system while considering a couple-stress dielectric fluid. Therefore, the study establishes the effect of thermal radiation in a couple-stress dielectric fluid with an anisotropic porous medium using Goody's approach (Goody, 1956). Design/methodology/approach - To analyze the effect of radiation on the onset of convection, the Milne-Eddington approximation is employed to convert radiative heat flux to thermal heat flux. The equations are further developed to approximate for transparent and opaque medium. Stability of the quiescent state within the framework of linear theory is performed. The principle of exchange of stabilities is shown to be valid by means of single-term Galerkin method. Large values of conduction-radiation and absorptivity parameters are avoided as fluid is considered as liquid rather than gas. Findings - The radiative heat transfer effect on a couple-stress dielectric fluid saturated anisotropic porous medium is examined in terms of Milne-Eddington approximation. The effect of couple-stress, dielectric, anisotropy and radiation parameters are analyzed graphically for both transparent and opaque medium. It is observed that the conduction-radiation parameter stabilizes the system; in addition, the critical Darcy-Rayleigh number also shows a stabilizing effect in the absence of couple-stress, dielectric and anisotropy parameters, for both transparent and opaque medium. Furthermore, the absorptivity parameter stabilizes the system in the transparent medium, whereas it exhibits a dual effect in the case of an opaque medium. It was also found that an increase in thermal and mechanical anisotropy parameters shows an increase in the cell size, whereas the increase in Darcy-Roberts number and conduction-radiation parameter decreases the cell size. The validity of principle of exchange of stability is performed and concluded that marginal stability is the preferred mode than oscillatory. Originality/value - The effects of anisotropy and radiation on Rayleigh-Benard convection by considering a couple-stress dielectric fluid has been analyzed for the first time.
机译:目的 - 在研究对流中流体的稳定性的同时,不能认为各向异性和辐射的影响。因此,本文的目的是分析这些效应在考虑耦合辅助介电流体的同时如何影响系统。因此,该研究建立了热辐射在几个应力介电流体中具有各向异性多孔介质的辅助介电流体(Goody,1956)。设计/方法/方法 - 分析辐射对对流开始的影响,Milne-Eddington近似用于将辐射热通量转化为热热通量。进一步开发了方程以近似透明和不透明培养基。执行线性理论框架内的静态状态的稳定性。稳定性交换原则显示通过单术语Galerkin方法有效。随着流体被认为是液体而不是气体,避免了传导辐射和吸收性参数的大值。结果 - 在Milne-Eddington近似方面检查了对耦合介电流体饱和各向异性多孔介质的辐射传热效果。以透明和不透明培养基图形方式分析对耦合,电介质,各向异性和辐射参数的影响。观察到导通辐射参数稳定系统;此外,关键的达西瑞利数还显示出透明和不透明培养基的临界应力,电介质和各向异性参数的稳定效果。此外,吸收率参数稳定在透明介质中的系统,而在不透明介质的情况下表现出双重效果。还发现热和机械各向异性参数的增加显示电池尺寸的增加,而达西罗伯斯数量和导通辐射参数的增加会降低电池尺寸。进行稳定性换算原则的有效性并得出结论,边际稳定性是优选的模式而不是振荡。原创性/值 - 首次分析了通过考虑辅助应力介电流体通过考虑思维良性对流的各向异性和辐射的影响。

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