首页> 外文会议>UIT (Italian Union of Thermo-Fluid-Dynamics) Heat Transfer Conference >Fluid-flow pressure measurements and thermo-fluid characterization of a single loop two-phase passive heat transfer device
【24h】

Fluid-flow pressure measurements and thermo-fluid characterization of a single loop two-phase passive heat transfer device

机译:单环两相无源传热装置的流体流动压力测量和热流体表征

获取原文

摘要

A Novel Single Loop Pulsating Heat Pipe (SLPHP), with an inner diameter of 2 mm, filled up with two working fluids (Ethanol and FC-72, Filling Ratio of 60%), is tested in Bottom Heated mode varying the heating power and the orientation. The static confinement diameter for Ethanol and FC-72, respectively 3.4 mm and 1.7mm, is above and slightly under the inner diameter of the tube. This is important for a better understanding of the working principle of the device very close to the limit between the Loop Thermosyphon and Pulsating Heat Pipe working modes. With respect to previous SLPHP experiments found in the literature, such device is designed with two transparent inserts mounted between the evaporator and the condenser allowing direct fluid flow visualization. Two highly accurate pressure transducers permit local pressure measurements just at the edges of one of the transparent inserts. Additionally, three heating elements are controlled independently, so as to vary the heating distribution at the evaporator. It is found that peculiar heating distributions promote the slug/plug flow motion in a preferential direction, increasing the device overall performance. Pressure measurements point out that the pressure drop between the evaporator and the condenser are related to the flow pattern. Furthermore, at high heat inputs, the flow regimes recorded for the two fluids are very similar, stressing that, when the dynamic effects start to play a major role in the system, the device classification between Loop Thermosyphon and Pulsating Heat Pipe is not that sharp anymore.
机译:内径为2mm的新型单环脉动热管(SLPHP),填充有两个工作流体(乙醇和Fc-72,填充比为60%),在底部加热模式下测试改变加热功率和方向。乙醇和Fc-72的静速度直径分别为3.4mm和1.7mm,在管的内径上方和略微下方。这对于更好地理解设备的工作原理非常靠近环热源磷和脉动热管工作模式之间的限制来说是一个重要的。关于在文献中发现的先前的SLPPP实验,这种装置设计有安装在蒸发器和冷凝器之间的两个透明插入件,允许直接流体流动可视化。两个高度精确的压力传感器允许局部压力测量在其中一个透明插入件的边缘处。另外,三个加热元件被独立地控制,以便在蒸发器处改变加热分布。结果发现,特殊的加热分布在优先方面促进块/塞流动运动,增加了器件的整体性能。压力测量值指出蒸发器和冷凝器之间的压降与流动模式有关。此外,在高热量输入中,为两个流体记录的流动制度非常相似,强调,当动态效果开始在系统中发挥重要作用时,环热水脊柱和脉动热管之间的器件分类并不是那么尖锐不过。

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