首页> 外文会议>IEEE Intersociety Conference on Thermal and Thermomechanical Phenomena in Electronic Systems >Experimental Performance of Completely Passive Single and Recirculating Loop Thermosyphon Cooling Systems using Low GWP R1234ze and R1234yf
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Experimental Performance of Completely Passive Single and Recirculating Loop Thermosyphon Cooling Systems using Low GWP R1234ze and R1234yf

机译:使用低GWP R1234ze和R1234yf的完全被动式单循环循环热虹吸冷却系统的实验性能

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摘要

This paper proposes a novel concept for a loop thermosyphon cooling system, designed for the transistor module of a transformer. The thermosyphon uses a free convection cooled condenser, making the system completely passive, i.e. no energy consumption is needed for it to function. Furthermore, the novel configuration uses the separation of the liquid and vapor phases at the evaporator outlet in such a way that the liquid is recirculated at the evaporator inlet while the vapor goes up in the riser. The frictional pressure drops in the riser and the condenser are thus reduced, and the overall gravitational force on the working fluid is increased, leading to an increase in the mass flow rates. Two low-GWP working fluids are tested in both the single and recirculation loops: R1234ze and R1234yf. The comparison between the two loop configurations is carried out discussing the temperature readings of the heaters used to emulate the transistors, the overall thermal resistance and the mass flow rates. It is demonstrated that the recirculation loop is a desirable solution for low-pressure working fluids, such as the R1234ze, because of the higher reduction of the liquid phase in the riser. For high-pressure fluids, such as the R1234yf, the improvements regarding mass flow rates are minor, but still present. At the maximum heat load tested for each configuration (65 - 70 W), the overall thermal resistance is within the range 0.44 - 0.48 K/W, and the temperature of the heaters is always lower than 55 °C. According to these data, the thermosyphon system proposed here seems to be an optimal solution for the cooling of high-heat flux electronic devices.
机译:本文提出了一种针对环路热虹吸冷却系统的新颖概念,该系统设计用于变压器的晶体管模块。热虹吸管使用自由对流冷却的冷凝器,使系统完全无源,即,无需消耗能量即可运行。此外,新颖的构造利用蒸发器出口处的液相和气相的分离,使得液体在蒸发器入口处再循环,同时蒸汽在提升管中上升。因此减小了立管和冷凝器中的摩擦压降,并且作用在工作流体上的总重力增加了,从而导致了质量流量的增加。在单回路和再循环回路中都测试了两种低GWP的工作流体:R1234ze和R1234yf。进行了两个回路配置之间的比较,讨论了用于模拟晶体管的加热器的温度读数,整体热阻和质量流率。已经证明,对于提升管中液相的更高还原度,再循环回路是低压工作流体(例如R1234ze)的理想解决方案。对于高压流体,例如R1234yf,在质量流量方面的改进很小,但仍然存在。在每种配置下测试的最大热负荷(65-70 W)下,整体热阻在0.44-0.48 K / W的范围内,并且加热器的温度始终低于55°C。根据这些数据,这里提出的热虹吸系统似乎是冷却高热通量电子设备的最佳解决方案。

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