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首页> 外文期刊>International Journal of Heat and Mass Transfer >Thermo-hydrodynamics of a viscoelastic fluid under asymmetrical heating
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Thermo-hydrodynamics of a viscoelastic fluid under asymmetrical heating

机译:非对称加热下粘弹性流体的热流体力学

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摘要

We investigate the influence of viscous dissipation on the convective heat transfer and entropy generation characteristics for the Poiseuille flow of a viscoelastic fluid in an asymmetrically heated slit microchannel. We use the simplified Phan –Thein –Tanner constitutive equations to describe the rheology of the fluid. Considering hydrodynamic slip at fluid–solid interface, we analytically solve the transport equations to obtain the velocity and temperature fields inside the flow domain, which are further used to evaluate the Nusselt number and the thermodynamic irreversibility generation rate. The results show that the present thermo-fluidic transport process is strongly influenced by the governing dimensionless parametersviz., the Brinkman number, heat flux ratio, viscoelastic group and slip coefficient. Finally, this study reveals that the Brinkman number and viscoelastic parameter have reverse effects on the Nusselt number and entropy generation rate as compared to the slip coefficient.
机译:我们研究了粘滞耗散对非对称加热狭缝微通道中粘弹性流体的泊瓦流的对流传热和熵产生特性的影响。我们使用简化的Phan –Thein –Tanner本构方程来描述流体的流变性。考虑到流固界面的流体动力学滑移,我们通过解析求解运移方程以获得流域内的速度和温度场,这些流场和温度场可进一步用于评估Nusselt数和热力学不可逆生成率。结果表明,当前的热流体传输过程受到控制的无量纲参数即布林克曼数,热通量比,粘弹性基团和滑移系数的强烈影响。最后,这项研究表明,与滑移系数相比,布林克曼数和粘弹性参数对努塞尔数和熵产生率具有相反的影响。

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