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Enhancement of heat transportation by oscillatory flow in a curved tube

机译:通过弯曲管中的振荡流增强热传递

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The present paper deals with the longitudinal heat transportation by an oscillatory flow in a curved tube heat transportation pipe. The velocity and temperature fields during oscillatory water flow in a curved tube with inner diameter of 10 mm were numerically simulated using the commercial software FLUENT. To clarify the effect of the curvature on heat transportation, the ratio of the tube radius to the curvature radius was varied from 0.0125 to 0.075, and oscillatory flow frequency was varied from 0.1 to 2.0 Hz. The effective thermal diffusivity exhibited a peak at a curvature ratio around 0.05-0.07 and reached a value 12 times higher than that of a straight tube. It was also found that the dispersion of fluid particles due to secondary flow caused the enhancement of heat transportation.
机译:本文通过弯曲管传热管中的振荡流处理纵向传热。使用商业软件FLUENT对内径为10 mm的弯曲管中的振荡水流中的速度和温度场进行了数值模拟。为了阐明曲率对热传输的影响,管半径与曲率半径之比在0.0125到0.075之间变化,振荡流动频率在0.1到2.0 Hz之间变化。有效热扩散率在曲率比约为0.05-0.07时出现一个峰值,并达到比直管高12倍的值。还发现由于二次流引起的流体颗粒的分散引起热传递的增强。

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