首页> 外文会议> >Single-phase and boiling cooling of small pin fin arrays by multiple slot nozzle suction and impingement
【24h】

Single-phase and boiling cooling of small pin fin arrays by multiple slot nozzle suction and impingement

机译:通过多槽喷嘴吸力和冲击力对小销翅片阵列进行单相和沸腾冷却

获取原文

摘要

Experimental measurements of forced convection single-phase and boiling heat transfer from pin fin arrays were made using fluorocarbon liquid FC-72. Liquid flow was directed to and from the pin fin arrays by multiple slot nozzles, alternately providing suction and impingement flow. Rectangular pin fin arrays having equal width and spacing of 0.1 and 0.2 mm and aspect ratios of 1, 2.25 and 5 were machined from 1 cm square copper blocks, providing total surface areas of 200 to 600 mm/sup 2/. The multiple slot nozzles featured alternating inlet and outlet channels 1 mm wide on a 2 mm pitch, providing inlet and outlet cross-sectional areas of 25 mm/sup 2/. Flow rates of 1.25 to 10 cm/sup 3s (0.075 to 0.6 l/min) were tested, resulting in inlet and outlet velocities of 0.05 to 0.4 m/s and pin fin array velocities from 0.05 to 4.0 m/s. The range of flow rates and pin fin geometries provided single-phase heat transfer coefficients (based on planform area) from 5.2 to 38.5 kW/m/sup 2/K and critical heat flux from 89 to 369 W/cm/sup 2/ at an inlet temperature of 16/spl deg/C, corresponding to 40/spl deg/C subcooling. At a fixed pin fin aspect ratio and liquid flow rate, reducing pin fin width from 0.2 mm to 0.1 mm increased single-phase heat transfer by an average of 7%, while critical heat flux remained constant. Correlations of the single-phase heat transfer coefficient and critical heat flux as functions of liquid flow rate, pin fin aspect ratio and width are provided.
机译:使用碳氟化合物液体FC-72对针翅阵列进行强制对流单相和沸腾传热的实验测量。通过多个狭缝喷嘴将液体流导引至翅片阵列,或从中导引出来,交替提供吸力和冲击力。从1厘米见方的铜块上加工出宽度和间距分别为0.1和0.2毫米,纵横比为1、2.25和5的矩形针鳍阵列,其总表面积为200至600 mm / sup 2 /。多槽喷嘴具有交替的入口和出口通道,其入口通道宽度为1 mm,间距为2 mm,提供的入口和出口横截面积为25 mm / sup 2 /。测试了1.25至10 cm / sups 3s(0.075至0.6 l / min)的流速,得出入口和出口速度为0.05至0.4 m / s,针鳍阵列速度为0.05至4.0 m / s。流速和针翅几何形状的范围提供了从5.2到38.5 kW / m / sup 2 / K的单相传热系数(基于平面形状面积)和从89到369 W / cm / sup 2 /的临界热通量。入口温度为16 / spl deg / C,对应于40 / spl deg / C过冷。在固定的针状翅片纵横比和液体流速不变的情况下,将针状翅片宽度从0.2 mm减小到0.1 mm,可使单相传热平均增加7%,而临界热通量保持恒定。提供了单相传热系数和临界热通量与液体流速,针形翅片长宽比和宽度的函数的关系。

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