首页> 外文期刊>Journal of Heat Transfer >Effect of Entry Temperature on Forced Convection Heat Transfer With Viscous Dissipation in Thermally Developing Region of Concentric Annuli
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Effect of Entry Temperature on Forced Convection Heat Transfer With Viscous Dissipation in Thermally Developing Region of Concentric Annuli

机译:入口温度对同心环形热发展区粘性耗散强迫对流换热的影响

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摘要

Steady laminar forced convection heat transfer in the thermal entrance region of concentric annuli has been studied considering viscous dissipation characterized by the Brink-man number. The inner and outer pipes have been kept at constant and equal temperature. Two cases of entry temperatures have been considered, case 1: an entry temperature that varies with the radial coordinate, obtained by an adiabatically prepared fluid, i.e., attained by the fluid due to viscous dissipation in an adiabatic concentric annular duct and case 2: the conventional uniform entry temperature. The numerical results presented include the nondimensional temperature profiles, Nusselt numbers, and heat transferred from (or to) the inner and outer pipes. It has been shown from the numerical solutions that it is necessary to employ the dissipative entry temperature in place of conventional uniform entry temperature for higher Brinkman numbers. The results for circular pipes follow when the radius ratio takes the limiting value of zero.
机译:考虑到以布林克曼数为特征的粘性耗散,研究了在同心环面热入口区域内的稳态层流强迫对流换热。内管和外管已保持恒定且相等的温度。考虑了两种进入温度的情况,第一种情况:通过绝热制备的流体获得的入口温度随径向坐标而变化,即,由于绝热同心环形管道中的粘性耗散而通过流体获得的进入温度;第二种情况:常规的均匀入口温度。给出的数值结果包括无量纲温度曲线,努塞尔数以及从(或传递到)内管和外管的热量。从数值解已经表明,对于较高的布林克曼数,必须使用耗散的进入温度来代替常规的均匀进入温度。当半径比取极限值零时,得出圆形管的结果。

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