首页> 外文期刊>Journal of Thermal Science and Engineering Applications: Transactions of the ASME >Detailed Heat Transfer Measurements Inside Rotating Ribbed Channels Using the Transient Liquid Crystal Technique
【24h】

Detailed Heat Transfer Measurements Inside Rotating Ribbed Channels Using the Transient Liquid Crystal Technique

机译:使用瞬态液晶技术的旋转肋通道内部的详细传热测量

获取原文
获取原文并翻译 | 示例
       

摘要

Coolant flow in rotating internal serpentine channels is highly complex due to the effects of the Coriolis force and centrifugal buoyancy. Detailed knowledge of the heat transfer over a surface will greatly enhance the blade designers' ability to predict hot spots so coolant may be distributed effectively. The present study uses a novel transient liquid crystal technique to measure heat transfer on a rotating two-pass channel surface with chilled inlet air. The present study examines the differences in heat transfer distributions on channel surfaces with smooth walls, 90 deg rib and W-shaped rib tabulated walls. The test section is made up of two passes to model radially inward and outward flows. To account for centrifugal buoyancy, cold air is passed through a room temperature test section. This ensures that buoyancy is acting in a similar direction to real turbine blades. The inlet coolant-to-wall density ratio is fixed at 0.08, Re = 16,000, and Ro = 0.08. The present study shows that the W-shaped ribs enhance heat transfer in all cases (stationary and rotating) approximately 1.75 times more than the 90 deg ribs. The W-shaped rib channel is least affected by rotation, which may be due to the complex nature of the secondary flow generated by the geometry. A higher pressure drop is associated with the W-shaped ribs than the 90 deg ribs, however, the overall thermal-hydraulic performance of the W-shaped ribs still exceeds that set by the 90 deg ribs.
机译:由于科里奥利力和离心浮力的影响,旋转的内部蛇形通道中的冷却剂流动非常复杂。对表面传热的详细了解将极大地提高叶片设计人员预测热点的能力,从而可以有效地分配冷却剂。本研究使用一种新颖的瞬态液晶技术来测量带有冷冻进气的旋转两通通道表面上的热传递。本研究研究了具有光滑壁,90度肋骨和W形肋板壁的通道表面的传热分布差异。测试部分由两个通道组成,以模拟径向向内和向外的流动。为了说明离心浮力,使冷空气通过室温测试段。这确保了浮力的作用方向与实际涡轮机叶片相似。入口冷却剂与壁的密度比固定为0.08,Re = 16,000和Ro = 0.08。本研究表明,在所有情况下(固定和旋转),W形肋都比90度肋增强传热约1.75倍。 W形肋通道受旋转影响最小,这可能是由于几何形状所产生的二次流的复杂性所致。与90度肋相比,W形肋的压降更高,但是,W型肋的整体热工液压性能仍然超过了90度肋的设定。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号