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南京师范大学能源与机械工程学院
纸质出版:2023
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赵娟, 张忠斌, 陈萌, 等. 疫苗冷藏车热性能影响因素实测研究[J]. 制冷学报, 2023,44(2).
Zhao Juan, Zhang Zhongbin, Chen Meng, et al. Experimental Study on the Factors Influencing the Thermal Performance of Vaccine Refrigeration Vehicles[J]. Journal of Refrigeration, 2023, 44(2).
赵娟, 张忠斌, 陈萌, 等. 疫苗冷藏车热性能影响因素实测研究[J]. 制冷学报, 2023,44(2). DOI: 10.3969/j.issn.0253-4339.2023.02.127.
Zhao Juan, Zhang Zhongbin, Chen Meng, et al. Experimental Study on the Factors Influencing the Thermal Performance of Vaccine Refrigeration Vehicles[J]. Journal of Refrigeration, 2023, 44(2). DOI: 10.3969/j.issn.0253-4339.2023.02.127.
为研究2~8 ℃疫苗冷藏车内部温度场情况并优化性能,本文以3.9 m3的疫苗冷藏车为研究对象,在压缩机转速为1 800 r/min的条件下,分别对太阳辐射强度、风道结构、制冷机组开关及有无门帘4个车厢热性能影响因素进行实测研究,结合评价指标对测量时间段内温度场的均匀性、温度变化速率进行系统分析。结果表明:疫苗冷藏车分别位于平均太阳辐射强度为295.94、82.78 W/m2条件下2 h后,前者车厢内平均温度比后者高1.326 ℃,且制冷机组启停频率加快,能耗增大;设置风道结构可以减少车厢内局部热点,且预冷时降温速率增快0.006 ℃/s;打开车门120 s时间内保持制冷机组开启会加强车内气流与环境换热,对车厢温度场扰动较大,因此建议车厢门与制冷机组联动开关;车厢设置门帘可以有效阻止车厢冷空气与环境进行热量交换,有效维持车厢低温。
To investigate the temperature distribution and optimize the thermal performance of a vehicle carriage for transporting refrigerated vaccines
a 3.9 m3 vehicle carriage working within the temperature range of 2–8 °C is examined in this study. Four factors
namely
solar radiation intensity
air duct structure
refrigeration unit switch
and door curtain
which influence the thermal performance
are experimentally studied at a compressor speed of 1 800 r/min. The uniformity of the temperature distribution and the temperature change rate during the measurement period are comprehensively analyzed. The results show that when the vaccine refrigeration vehicle is maintained under an average solar radiation intensity of 295.94 W/m2and 82.78 W/m2 for two hours
the average temperature in the carriage under the former condition is 1.326 °C higher than that under the latter. The on-off frequencies of the refrigeration units increase
and the energy consumption of the vehicle increases. The application of the air duct structure can help reduce the local hot spots in the carriage
and the rate of pre-cooling increases by 0.006 °C/s. Moreover
when the carriage door is opened for 120 s
continuous operation of the refrigeration unit enhances the airflow heat exchange between the inside and outside of the carriage
which noticeably disturbs the temperature distribution in the vehicle. Therefore
closing the refrigerating unit is recommended when the vehicle door is opened. The curtain can effectively prevent cold air from exchanging heat with the environment and maintain the low temperature of the carriage.
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