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首页> 外文期刊>European Physical Journal Plus >Nonlinear convective analysis of a rotating Oldroyd-B nanofluid layer under thermal non-equilibrium utilizing Al2O3-EG colloidal suspension
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Nonlinear convective analysis of a rotating Oldroyd-B nanofluid layer under thermal non-equilibrium utilizing Al2O3-EG colloidal suspension

机译:Al2O3-EG胶体悬浮液在热不平衡条件下旋转的Oldroyd-B纳米流体层的非线性对流分析

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摘要

In this paper, we examine a layer of Oldroyd-B nanofluid for linear and nonlinear regimes under local thermal non-equilibrium conditions for the classical Rayleigh-Benard problem. The free-free boundary condition has been implemented with the flux for nanoparticle concentration being zero at edges. The Oberbeck-Boussinesq approximation holds good and for the rotational effect Coriolis term is included in the momentum equation. A two-temperature model explains the effect of local thermal non-equilibrium among the particle and fluid phases. The criteria for onset of stationary convection has been derived as a function of the non-dimensionalized parameters involved including the Taylor number. The assumed boundary conditions negate the possibility of overstability due to the absence of opposing forces responsible for it. The thermal Nusselt number has been obtained utilizing a weak nonlinear theory in terms of various pertinent parameters in the steady and transient mode, and has been depicted graphically. The main findings signify that the rotation has a stabilizing effect on the system. The stress relaxation parameter lambda(1) inhibits whereas the strain retardation parameter lambda(2) exhibits heat transfer utilizing Al2O3 nanofluids.
机译:在本文中,我们针对经典瑞利-贝纳德问题在局部热非平衡条件下研究了线性和非线性状态下的Oldroyd-B纳米流体层。已经实现了自由-自由边界条件,其中纳米颗粒浓度的通量在边缘处为零。 Oberbeck-Boussinesq近似保持良好,并且对于旋转效应,科里奥利项包含在动量方程中。两温模型解释了颗粒和流体相之间局部热不平衡的影响。已根据涉及泰勒数在内的非量纲化参数得出了静止对流的开始标准。假定的边界条件消除了由于不存在造成这种情况的相反作用力而导致过度稳定的可能性。热努塞尔数已使用弱非线性理论根据稳态和瞬态模式下的各种相关参数获得,并已用图形表示。主要发现表明,旋转对系统具有稳定作用。应力松弛参数lambda(1)会受到抑制,而应变延迟参数lambda(2)会利用Al2O3纳米流体进行传热。

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