冠状转子-定子系统的间隙加热。

Journal of Engineering for Gas Turbines and Power Pub Date : 2014-06-01 Epub Date: 2014-02-04 DOI:10.1115/1.4026429
Zhi Tao, Da Zhang, Xiang Luo, Guoqiang Xu, Jianqiao Han
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引用次数: 14

摘要

本文采用实验和数值方法研究了具有重叠流动的带冠转子-定子盘系统的间隙加热问题。当冷却空气流过旋转部件时,旋转盘上半径方向的温升与粘性加热过程有关。建立了一套试验装置,分别研究了流动参数和间隙比对风阻加热的影响。在直径为0.45 m、间隙比为0.02 ~ 0.18、转速高达12000 rpm的圆盘和直径相同的定子上进行了实验。提出了直接测量转子表面温升的红外测温技术。采用PIV技术进行切向速度测量。将腔内径向切向速度数据与CFD模拟结果进行了比较。通过与自由盘温升数据的比较和对风热的理论分析表明,红外方法可以准确地测量绝热盘温度。由于湍流参数值较小,间隙比对沿半径的温升分布影响有限。随着湍流参数的增大,温升差与间隙比无关,只与旋转雷诺数和通流雷诺数有关。PIV结果表明,转子和定子之间的旋转铁心的旋流比对风阻加热有关键影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Windage Heating in a Shrouded Rotor-Stator System.

This paper has experimentally and numerically studied the windage heating in a shrouded rotor-stator disk system with superimposed flow. Temperature rise in the radius direction on the rotating disk is linked to the viscous heating process when cooling air flows through the rotating component. A test rig has been developed to investigate the effect of flow parameters and the gap ratio on the windage heating, respectively. Experimental results were obtained from a 0.45 m diameter disk rotating at up to 12,000 rpm with gap ratio varying from 0.02 to 0.18 and a stator of the same diameter. Infrared temperature measurement technology has been proposed to measure the temperature rise on the rotor surface directly. The PIV technique was adapted to allow for tangential velocity measurements. The tangential velocity data along the radial direction in the cavity was compared with the results obtained by CFD simulation. The comparison between the free disk temperature rise data and an associated theoretical analysis for the windage heating indicates that the adiabatic disk temperature can be measured by infrared method accurately. For the small value of turbulence parameter, the gap ratio has limited influence on the temperature rise distribution along the radius. As turbulence parameter increases, the temperature rise difference is independent of the gap ratio, leaving that as a function of rotational Reynolds number and throughflow Reynolds number only. The PIV results show that the swirl ratio of the rotating core between the rotor and the stator has a key influence on the windage heating.

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