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Experimental Study on Thermal Hydraulic Characteristics of Steam Condensation in Capillary Glass Tubes

机译:毛细管玻璃管中冷凝水的热工水力特性实验研究

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摘要

At present, a microchannel heat exchanger is requested to achieve high efficiency in small size energy equipments. In order to clarify the heat transfer mechanism in a microchannel heat exchanger, knowledge on the thermal hydraulic characteristics of condensation flow in the channels is essential. However, study on the thermal hydraulic characteristics of condensation flow in a microchannel is hardly conducted except visualization of flow patterns. Objectives of the present study are to estimate the heat transfer performance of the present device and to observe the condensation behavior of vapor flow to clarify the thermal hydraulic characteristics of condensation flow in a capillary tube. As the results, it is confirmed that the microchannel heat exchanger realizes heat exchange of 7 kW when phase changes. In a single capillary glass tube as a simulated unit microchannel, the annular flow, the injection flow and the bubbly flow in a capillary tube are observed. According to the comparison of the present device and the glass tube experiment, it is suggested that the flow structure in the microchannel heat exchanger is almost same as that in the glass capillary tube.
机译:当前,要求微通道热交换器在小型能源设备中实现高效率。为了阐明微通道热交换器中的传热机理,必须了解通道中冷凝流的热水力特性。然而,除了流动模式的可视化之外,几乎没有对冷凝水在微通道中流动的热工水力特性进行研究。本研究的目的是评估本装置的传热性能,并观察蒸汽流的冷凝行为,以阐明毛细管中冷凝流的热工水力特性。结果,证实了当相变时微通道热交换器实现了7kW的热交换。在作为模拟单元微通道的单个毛细管玻璃管中,观察到毛细管中的环形流,注入流和气泡流。根据本装置与玻璃管实验的比较,建议在微通道换热器中的流动结构与在玻璃毛细管中的流动结构几乎相同。

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