首页> 外文会议>Micro/Nanoscale Heat Transfer International Conference 2008 >CHARACTERISTICS OF HEAT TRANSFER AND FLOW ON A SURFACE WITH SMALL-SCALE CONCAVE SPHERICAL PITS
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CHARACTERISTICS OF HEAT TRANSFER AND FLOW ON A SURFACE WITH SMALL-SCALE CONCAVE SPHERICAL PITS

机译:小尺度球面凹坑表面的传热与流动特性

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摘要

Small-scale concave spherical pits, which have a special effect on heat transfer enhancement and turbulent drag reduction, are investigated by numerical simulation in detail. Two kinds of small-scale concave pits structures are designed on surface of a plate, which are located in the bottom of a rectangle channel. The characteristics of heat transfer and flow in channel are investigated and compared with a same channel with plate bottom by means of LES. Flow structure and temperature distribution near the pits are analyzed. The numerical simulation results indicate that the concave spherical pits disturb the flow field and vortex is induced by the pits. The turbulent coherent structure is affected by the induced vortex. The numerical simulation indicates that small scale pit can generate the vortex in couple. The range of vortex is accord with the array of small scale pit. The small scale pit can enhance the intensity of vortex. As a result, the temperature field near the pit is changed with generation of the vortex. The heat transfer mechanism on plate with small scale concave spherical pit is summarized.
机译:通过数值模拟详细研究了小尺度的凹球形凹坑,这些凹坑对增强传热和减少湍流阻力具有特殊作用。平板表面设计了两种小型的凹坑结构,它们位于矩形通道的底部。研究了通道内的传热和流动特性,并通过LES将其与具有板底部的同一通道进行了比较。分析了矿坑附近的流动结构和温度分布。数值模拟结果表明,凹形球形凹坑扰动了流场,并产生了涡流。湍流相干结构受诱导的涡流影响。数值模拟表明,小尺度的凹坑可以成对产生涡流。涡旋的范围与小坑的排列相一致。小规模的凹坑可以增强涡旋强度。结果,凹坑附近的温度场随涡流的产生而变化。总结了小尺度凹球面板的传热机理。

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