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Convective heat transfer in the thermal entrance region of finned double-pipe

机译:翅片双管热入口区域的对流换热

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摘要

Numerical simulation of the steady and laminar convection in the thermal entry region of the finned annulus is carried out for the case of hydrody-namically fully developed flow when subjected to uniform heat flux thermal boundary condition. Finite difference based marching procedure is used to compute the numerical solution of the energy equation. The results to be presented include Nusselt number, as a function of dimensionless axial length and thermal entrance length for various configurations of the finned double-pipe. The numerical results show that Nusselt number has complex dependence on the geometric variables like ratio of radii, fin height, and number of fins. A comparison of the computed results for certain limiting cases with the results available in the literature validates the numerical procedure used in this work.
机译:在均匀热通量热边界条件下,在水力动力条件下充分展开的流动情况下,对翅片环空热进入区域的稳态和层流对流进行了数值模拟。基于有限差分的行进过程用于计算能量方程的数值解。呈现的结果包括Nusselt数,它是翅片双管的各种配置的无因次轴向长度和热入口长度的函数。数值结果表明,Nusselt数对半径,鳍高和鳍数等几何变量具有复杂的依赖性。将某些极限情况下的计算结果与文献中提供的结果进行比较,可以验证这项工作中使用的数值程序。

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