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基站用微通道分离式热管换热性能实验研究
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Experimental Investigation on Heat Transfer Characteristic of Micro-channel Separate Heat Pipe in Telecommunication Base Station
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    摘要:

    分离式热管空调能够有效降低基站能耗,采用微通道换热器作为其蒸发器和冷凝器可提高其换热性能.为了分析充液率对微通道分离式热管换热量、能效比及制冷剂压力、温度的影响,以及两种风量,不同室外温度下最佳充液率范围和换热量的变化,由焓差实验台模拟基站室内外环境,以R22为工质,对该系统进行测试.结果表明:标准工况下,系统最大换热量和EER分别为4.0 kW和11.8,最佳充液率范围为79.3%~105.8%,系统压力随充液率增加而增大,蒸发器进出口温差随充液率的增加先减小,后略有增大;蒸发器侧的风量由3 000 m3/h减少到1 700 m3/h时,最佳充液率范围不变,最大换热量和EER减少了29%,蒸发器出风温度由23.9 ℃降低到23.0 ℃.在不同室外温度下,最佳充液率范围随室外温度降低而变小,室内外温差增加能显著提高该系统的换热性能.研究结果对基站用微通道分离式热管的理论模型建立、节能设计与运行控制有一定参考价值.

    Abstract:

    The separated heat pipe can effectively reduce the energy consumption of telecommunication base station, and the micro-channel heat exchangers can be adopted as the evaporator and condenser. In order to investigate the effect of the filling ratio on the heat transfer rate,EER,refrigerant pressure and temperature, and the variation of optimal filling ratio range and heat transfer rate under two air volumes and different outdoor temperatures, experimental test was carried out in the enthalpy difference laboratory, taken R22 as working fluids. The heat transfer rate and EER were 4.0 kW and 11.8, respectively, and the optimal filling ratio was 79.3% to 105.8%. The pressure of the system increased with the increase of the filling ratio. As filling ratio increased,the temperature difference between the inlet and outlet of the evaporator decreased firstly, and then increased slightly. When the air flow rate was reduced from 3 000 m3/h to 1 700 m3/h, the optimum filling ratio was almost remained, but the air temperature of evaporator outlet decreased and the maximum heat transfer rate decreased by 29%. Finally, the system was tested under different outdoor operating conditions. The test results showed that the range of the optimal filling ratio became narrow with the decrease of the outdoor temperature. The results are useful for modeling, design, and operation control of the micro-channel separate heat pipe.

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张 泉,吴亚凝,凌 丽,娄建民,廖曙光,沙正勇.基站用微通道分离式热管换热性能实验研究[J].湖南大学学报:自然科学版,2016,43(7):139~145

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  • 在线发布日期: 2016-08-11
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