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首页> 外文期刊>Thermal science >HEAT TRANSFER AND FLOW REGION CHARACTERISTICS STUDY IN A NON-ANNULAR CHANNEL BETWEEN ROTOR AND STATOR
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HEAT TRANSFER AND FLOW REGION CHARACTERISTICS STUDY IN A NON-ANNULAR CHANNEL BETWEEN ROTOR AND STATOR

机译:转子与定子之间的非环形通道内的传热和流动区域特性研究

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This paper will present the results of the experimental investigation of heat transfer in a non-annular channel between rotor and stator similar to a real generator. Numerous experiments and numerical studies have examined flow and heat transfer characteristics of a fluid in an annulus with a rotating inner cylinder. In the current study, turbulent flow region, and heat transfer characteristics have been studied in the air gap between the rotor and stator of a generator. The test rig has been built in a way which shows a very good agreement with the geometry of a real generator. The boundary condition supplies a non-homogenous heat flux through the passing air channel. The experimental devices and data acquisition method are carefully described in the paper. Surface-mounted thermocouples are located on the both stator and rotor surfaces and one slip ring transfers the collected temperature from rotor to the instrument display. The rotational speed of rotor is fixed at three under: 300 rpm, 900 rpm, and 1500 rpm. Based on these speeds and hydraulic diameter of the air gap, the Reynolds number has been considered in the range: 4000 < Re_z < < 30000. Heat transfer and pressure drop coefficients are deduced from the obtained data based on a theoretical investigation and are expressed as a formula containing effective Reynolds number. To confirm the results, a comparison is presented with Gazley's data report. The presented method and established correlations can be applied to other electric machines having similar heat flow characteristics.
机译:本文将介绍类似于真实发电机的转子和定子之间的非环形通道内传热的实验研究结果。大量的实验和数值研究已经检查了带有旋转内筒的环空中流体的流动和传热特性。在当前的研究中,已经研究了发电机的转子和定子之间的气隙中的湍流区域和传热特性。测试台的建造方式与真实发电机的几何形状非常吻合。边界条件通过通过的空气通道提供了不均匀的热通量。本文对实验装置和数据采集方法进行了详细描述。表面安装的热电偶位于定子和转子的两个表面上,一个滑环将收集到的温度从转子传递到仪表显示屏。转子的转速固定在三个以下:300 rpm,900 rpm和1500 rpm。基于这些速度和气隙的液压直径,雷诺数已考虑在以下范围内:4000

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