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HEAT TRANSFER CHARACTERISTICS OF SUPERCRITICAL CO_2 FLOW IN SMALL-CHANNELED STRUCTURES

机译:小通道结构中超临界CO_2流动的传热特性

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Carbon dioxide (CO_2) has been proposed as a "natural refrigerant" for various kinds of refrigeration systems and has attracted increased attention from researchers and engineers all over the world. The heat transfer and flow characteristics of supercritical CO_2 in a multi-port extruded aluminum test section, which had ten circular channels with inner diameter of 1.31 mm, were investigated experimentally. The CO_2 was cooled with chilled copper blocks attached at the both sides of the test section. Local heat fluxes and temperatures at the outer surface of the test section were measured using 12 heat flux sensors and 24 K-type thermocouples, respectively. The mean temperatures of CO_2 at the inlet and outlet of the test section were also measured. The higher heat transfer rates were achieved in the near-critical region, and the system pressure, mass velocity, and temperature of CO_2 all were observed having significant effects on the heat transfer. An empirical correlation was then developed for forced convective heat transfer of supercritical CO_2 in horizontal micro/mini channels.
机译:二氧化碳(CO_2)已被提议作为各种制冷系统的“天然制冷剂”,并引起了全世界研究人员和工程师的越来越多的关注。实验研究了超临界CO_2在具有十个内径为1.31mm的圆形通道的多端口挤压铝试验段中的传热和流动特性。用附着在测试部分两侧的冷却铜块冷却CO_2。使用12个热通量传感器和24 K型热电偶分别测量了测试部分外表面的局部热通量和温度。还测量了测试部分的入口和出口处的CO_2平均温度。在近临界区域实现了更高的传热速率,并且观察到系统压力,质量速度和CO_2温度都对传热有显着影响。然后开发了经验相关性,用于水平微/微型通道中超临界CO_2的强制对流传热。

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