Kruzel Marcin, Bohdal Tadeusz, Dutkowski Krzysztof
Power Engineering Department, Koszalin University of Technology, 75-453 Koszalin, Poland.
Materials (Basel). 2021 Nov 12;14(22):6825. doi: 10.3390/ma14226825.
The paper describes the results of experimental studies of media as an intermediary in heat exchange taking place in low volume conditions. Their properties predestine them both as a future-proof for transporting and storing heat materials. The paper concerns the current topic related to the miniaturization of cooling heat exchangers. There are many studies in the literature on the phase transition of refrigerants in the flow in pipe minichannels. However, there is a lack of studies devoted to the condensation process in a small volume on the surface of pipe minichannels. The authors proposed a design of a small heat exchanger with a shell-and-tube structure, where the refrigerant condenses on the outer surface of the pipe minichannels cooled from the inside with water. It is a response to the global trend of building highly efficient, miniaturized structures for cooling and air conditioning heat exchangers. Two future-proof, ecological replacements of the CFC refrigerants still present in the installations were used for the experimental research. These are low-pressure fluids HFE 7000 and HFE 7100. The tests were carried out in a wide range of changes in thermal-flow parameters: G = 20-700 kg·ms, q = 3000-60,000 W·m, t = 40-80 °C.
本文描述了在小体积条件下作为热交换中介的介质的实验研究结果。它们的特性使其既适合作为未来运输和储存热材料的选择。本文涉及与冷却热交换器小型化相关的当前主题。文献中有许多关于制冷剂在管道微通道中流动时的相变研究。然而,缺乏专门针对管道微通道表面小体积内冷凝过程的研究。作者提出了一种具有壳管式结构的小型热交换器设计,其中制冷剂在用水从内部冷却的管道微通道外表面上冷凝。这是对构建高效、小型化的冷却和空调热交换器结构这一全球趋势的回应。实验研究使用了两种仍存在于装置中的CFC制冷剂的未来适用的生态替代品。它们是低压流体HFE 7000和HFE 7100。测试在热流参数的广泛变化范围内进行:G = 20 - 700 kg·m/s,q = 3000 - 60000 W/m²,t = 40 - 80 °C。