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首页> 外文期刊>Meccanica: Journal of the Italian Association of Theoretical and Applied Mechanics >Numerical simulation of inertial flow of heated and cooled viscoelastic fluids inside a planar sudden expansion channel: investigation of stresses effects on the total dissipation
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Numerical simulation of inertial flow of heated and cooled viscoelastic fluids inside a planar sudden expansion channel: investigation of stresses effects on the total dissipation

机译:平面突发膨胀通道内加热和冷却粘弹性液体惯性流动的数值模拟:对总耗散的应力影响

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摘要

In this paper, the inertial and non-isothermal flow of viscoelastic fluids in a planar channel with 1:3 sudden expansion has been simulated for Brinkman numbers in the range . The mass, momentum and energy conservation equations with the non-linear form of Phan-Thien-Tanner constitutive equation are used to describe the behavior of heated and cooled viscoelastic fluids flow. The properties of fluid are assumed temperature-dependent and the viscous dissipation terms are considered in the energy equation. The object of the current paper is to investigate the stresses and their effects on heat generation via the viscous dissipation terms in the energy equation for inertial flow of heated and cooled viscoelastic fluids. Therefore, plots of streamlines, isothermal lines, normal stress (), normal-transverse stress () and shear stress (), total dissipation, temperature and local Nusselt numbers have been drawn and examined in the channel expansion. The results show that for the asymmetric flow of heated and cooled viscoelastic fluids, the maximum values of total dissipation are located adjacent to the lower wall and at the centerline of the channel expansion. Also, by incrementing the Brinkman number in the hydrodynamically and thermally developing and fully developed zones, the values of total dissipation are increased.
机译:本文在平面通道中具有1:3突然膨胀的平面通道中的含有粘弹性流体的惯性和非等温流动,用于在该范围内的Brinkman数进行模拟。具有非线性形式的Phan-Thien-Tanner本构式方程的质量,动量和节能方程用于描述加热和冷却的粘弹性流体的行为。假设流体的性质依赖于温度依赖性,并且在能量方程中考虑了粘性耗散术语。目前纸张的目的是研究通过能量方程中的粘性耗散术语来研究应力及其对热量产生的热量,用于惯性和冷却的粘弹性液体的惯性流动。因此,已经在通道膨胀中绘制并检查了流线,等温线,正常应力(),正常横向应力()和剪切应力(),常规耗散,温度和局部营养数。结果表明,对于加热和冷却的粘弹性流体的不对称流动,总耗散的最大值位于下壁附近和通道膨胀的中心线。而且,通过将Brinkman号递增在流体动力学和热开发和完全发育的区域中,总耗散的值增加。

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