...
首页> 外文期刊>International Journal of Heat and Mass Transfer >Experimental comparison and visualization of in-tube continuous and pulsating flow boiling
【24h】

Experimental comparison and visualization of in-tube continuous and pulsating flow boiling

机译:管内连续和脉动流沸腾的实验比较和可视化

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

This experimental study investigated the application of fluid flow pulsations for in-tube flow boiling heat transfer enhancement in an 8 mm smooth round tube made of copper. The fluid flow pulsations were introduced by a flow modulating expansion device and were compared with continuous flow generated by a stepper-motor expansion valve in terms of the time-averaged heat transfer coefficient. The cycle time ranged from 1 s to 7 s for the pulsations, the time-averaged refrigerant mass flux ranged from 50 kg m−2 s−1to 194 kg m−2 s−1and the time-averaged heat flux ranged from 1.1 kW m−2to 30.6 kW m−2. The time-averaged heat transfer coefficients were reduced from transient measurements immediately downstream of the expansion valves with 2 K and 20 K subcooling upstream, resulting in inlet vapor qualities at 0.05 and 0.18, respectively, and covered the saturated flow boiling range up to the dry-out inception. Averaged results of the considered range of vapor qualities, refrigerant mass flux and heat flux showed that the pulsations at low cycle time (1 s) improved the time-averaged heat transfer coefficients by 5.6% and 2.2% for the low and high subcooling, respectively. However, the pulsations at high cycle time (7 s) reduced the time-averaged heat transfer coefficients by 1.8% and 2.3% for the low and high subcooling, respectively, due to significant dry-out when the flow-modulating expansion valve was closed. Furthermore, the flow pulsations were visualized by high-speed camera to assist in understanding the time-periodic flow regimes and the effect they had on the heat transfer performance.
机译:该实验研究研究了流体脉动在增强铜制8mm圆管中的管内流动沸腾传热中的应用。流体流量脉动是由流量调节膨胀装置引入的,并且就时间平均传热系数而言,将其与步进电机膨胀阀产生的连续流量进行比较。脉动的循环时间从1 s到7 s,时间平均制冷剂质量通量从50 kg m-2 s-1到194 kg m-2 s-1,时间平均热通量在1.1 kW m范围内-2至30.6 kW m-2。时间均值的传热系数从膨胀阀下游的瞬态测量值开始降低,上游有2 K和20 K过冷,入口蒸汽质量分别为0.05和0.18,覆盖了饱和流沸点直至干燥出局开始。对蒸汽质量,制冷剂质量通量和热通量的考虑范围的平均结果表明,在低循环时间(1 s)时,脉动使低和高过冷度的时间平均传热系数分别提高了5.6%和2.2%。 。但是,在高循环时间(7秒)时,低和高过冷度的脉动分别使平均时间的传热系数降低了1.8%和2.3%,这是由于关闭了流量调节膨胀阀时会明显变干的缘故。此外,通过高速摄像机对流量脉动进行可视化,以帮助理解时间周期的流量状态及其对传热性能的影响。

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