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首页> 外文期刊>Journal of Thermal Science and Technology >Heat transfer and flow characteristics of thermally induced two-phase oscillating flow in micro tubes
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Heat transfer and flow characteristics of thermally induced two-phase oscillating flow in micro tubes

机译:微管中热诱导的两相振荡流的传热和流动特性

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Thermally induced two-phase oscillation in a capillary tube is known to effectively transport large amount of heat. However, the oscillating flow is very complicated, because acceleration, deceleration, evaporation and condensation take place simultaneously. In this study, heat transfer and flow characteristics of the thermally induced oscillating flow in a straight micro tube were experimentally investigated. The experimental setup was composed of heating, cooling, and moving sections. Circular and square tubes were compared to investigate the effects of the channel geometry. In addition, the circular tubes with roughed inner surfaces were tested to investigate the effect of roughness. Furthermore, different types of the moving section were compared. PF-5060 (C_(6)F_(14)) was used for a working fluid. The oscillating motion was detected by the pressure change in the test section and the displacement of the moving section. Effective thermal conductivities representing thermal performance were compared against the heat flux defined by the channel cross-sectional areas. The circular tube showed better performance than the square tube. The circular tubes with roughed inner surface showed better performance than the circular tube with no surface treatment. From the visualization, it is considered that the amount of wetted area affects the thermal performance.
机译:众所周知,毛细管中的热感应两相振荡可以有效地传输大量热量。然而,振荡流非常复杂,因为加速,减速,蒸发和冷凝同时发生。在这项研究中,通过实验研究了直管中热诱导振荡流的传热和流动特性。实验设置由加热,冷却和移动部分组成。比较圆形和方形管,以研究通道几何形状的影响。另外,测试了具有粗糙内表面的圆形管,以研究粗糙度的影响。此外,比较了不同类型的移动部分。 PF-5060(C_(6)F_(14))用于工作流体。通过测试部分中的压力变化和移动部分的位移来检测振荡运动。将代表热性能的有效热导率与通道横截面面积所定义的热通量进行了比较。圆形管显示出比方形管更好的性能。内表面粗糙的圆形管比没有表面处理的圆形管表现出更好的性能。从可视化中可以认为,湿润区域的数量会影响热性能。

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