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Transient and steady-state forced convection to power-law fluids in the thermal entrance region of circular ducts: Effects of viscous dissipation, variable viscosity, and axial conduction

机译:圆形管道热入口区域中幂律流体的瞬态和稳态强迫对流:粘性耗散,可变粘度和轴向传导的影响

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摘要

A numerical study was conducted on the transient behavior of a hydrodynamically fully developed, laminar flow of power-law fluids in the thermally developing entrance region of circular ducts with taking into account the effects of viscous dissipation, axial conduction, and variations of viscosity with temperature. In this regard, the unsteady-state thermal energy and momentum equations were solved numerically using a finite-difference method, whereas the steady-state thermal energy equation with constant wall heat flux as the boundary condition was solved analytically as the initial condition of the former. The numerical procedure used in the present work was validated with an analytical solution for the special case of Newtonian fluids. The effects of the power-law index, axial conduction, wall heat flux, and variations of fluid viscosity on the local Nusselt number and thermal entrance length were investigated. Moreover, the local Nusselt number values of steady-state conditions were correlated as a function of the power-law index and wall heat flux. Furthermore, a correlation was derived for the thermal entrance length as a function of the power-law index and wall heat flux.
机译:考虑了粘性耗散,轴向传导以及粘度随温度变化的影响,对圆形通道热发展入口区域中动力定律的流体动力学充分发展的层流瞬态行为进行了数值研究。 。在这方面,使用有限差分法对非稳态热能和动量方程进行了数值求解,而以恒定壁热通量为边界条件的稳态热能方程作为前者的初始条件进行了解析求解。 。本文针对牛顿流体的特殊情况,通过解析解验证了本文中使用的数值程序。研究了幂律指数,轴向传导,壁热通量和流体粘度变化对局部Nusselt数和热入口长度的影响。此外,稳态条件下的局部Nusselt数值与幂律指数和壁热通量相关。此外,得出了热入口长度与幂律指数和壁热通量的函数关系。

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