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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Convective heat transfer in the entry region of an annular channel with slotted rotating inner cylinder
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Convective heat transfer in the entry region of an annular channel with slotted rotating inner cylinder

机译:对流传热在带槽旋转内筒的环形通道的入口区域内

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This paper investigates the convective heat transfer of a complex annular channel with an inner rotating wall. This configuration corresponds to the air gap of an open four-pole synchronous motor. The channel is constituted of a smooth static outer cylinder and a rotating inner cylinder with four slots such that the channel's diameter is 15.8 mm. Experiments were performed for axial Reynolds numbers from 2140 to 6425 and rotational Reynolds numbers from 1750 to 35,000 (corresponding to Taylor numbers from 10~4 to 4. 10~6). Local heat transfer on both cylinders (rotor and stator) was measured using an infrared thermography device. PIV measurements were carried out in rotor slots. Results show a clear difference of heat transfer between slots sides and poles. In both cases, Nusselt number variation is comparable to the variation encountered in the entry region of a stationary channel. Both variation and level of heat transfer nonetheless depend on axial speed as well as rotational speed.
机译:本文研究了带有内旋转壁的复杂环形通道的对流传热。该配置对应于开放式四极同步电动机的气隙。通道由光滑的静态外圆柱体和具有四个槽的旋转内圆柱体组成,通道的直径为15.8 mm。进行了轴向雷诺数从2140到6425,旋转雷诺数从1750到35,000(对应于泰勒数从10〜4到4。10〜6)的实验。使用红外热成像仪测量两个气缸(转子和定子)上的局部传热。 PIV测量在转子槽中进行。结果表明,槽侧和极之间的热传递有明显差异。在这两种情况下,Nusselt数变化都可与固定通道进入区域中遇到的变化相比。然而,传热的变化和水平都取决于轴向速度以及旋转速度。

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