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Entrance and temperature dependent property effects in the laminar forced convection in straight ducts with uniform wall temperature

机译:入口和温度依赖性性质在具有均匀壁温下的直管中的层压电压对流

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The paper reports the results of a parametric investigation on the effects of temperature dependent viscosity and thermal conductivity on forced convection in simultaneously developing laminar flows of liquids in straight ducts of constant cross-sections. Uniform temperature boundary conditions are specified at the duct walls. Viscosity is assumed to vary with temperature according to an exponential relation, while a linear dependence of thermal conductivity on temperature is assumed. The other fluid properties are held constant. Two different cross-sectional geometries, namely circular and flat ducts, are considered. A finite element procedure is employed for the solution of the parabolized momentum and energy equations. Computed axial distributions of the local Nusselt number are presented for different values of the entrance Prandtl number and of the viscosity and thermal conductivity Pearson numbers. Moreover, a superposition method is proved to be applicable in order to obtain an approximate value of the local Nusselt number by separately considering the effects of temperature dependent viscosity and those of temperature dependent thermal conductivity.
机译:本文报告了参数研究的结果对温度依赖性粘度和热导率对恒定横截面的直管式液体的液体流动的效果的影响。在管道壁上指定均匀的温度边界条件。假设粘度根据指数关系而与温度变化,同时假设导热率对温度的线性依赖性。其他流体性质保持恒定。考虑两个不同的横截面几何形状,即圆形和平导管。采用有限元件用于解抛配动量和能量方程。对于入口普朗特数量和粘度和导热性Pearson编号的不同值,提供了所计算的局部营养数的轴向分布。此外,证明了一种叠加方法,以便通过单独考虑温度依赖性粘度和温度依赖性导热率的影响来获得局部营养数的近似值。

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