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1.西安建筑科技大学建筑设备科学与工程学院 西安 710055
2. 华商国际工程有限公司 北京 100069
3. 西安交通大学能源与动力工程学院 西安 710049
4. 教育部低碳建筑环境国际合作联合实验室 西安 710055
齐迪,女,副教授,西安建筑科技大学建筑设备科学与工程学院,教育部低碳建筑环境国际合作联合实验室,15094052027,E-mail:qidi@xauat.edu.cn。研究方向:建筑及日光温室地热能应用,气流组织优化。
收稿:2025-02-25,
修回:2025-03-21,
录用:2025-04-15,
网络出版:2025-11-07,
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刘育栋,管佳佳,齐迪等.基于场协同理论对高架立体医药库货架布置的优化研究[J].制冷学报,
Liu Yudong,Guan Jiajia,Qi Di,et al.Optimization of Shelf Arrangement of a High-Rack Pharmaceutical Cold Store Based on Field Synergy Theory[J].Journal of Refrigeration,
刘育栋,管佳佳,齐迪等.基于场协同理论对高架立体医药库货架布置的优化研究[J].制冷学报, DOI:10.12465/issn.0253-4339.20250225004. CSTR: XXXXX.XX.XXX.20250225004.
Liu Yudong,Guan Jiajia,Qi Di,et al.Optimization of Shelf Arrangement of a High-Rack Pharmaceutical Cold Store Based on Field Synergy Theory[J].Journal of Refrigeration, DOI:10.12465/issn.0253-4339.20250225004. CSTR: XXXXX.XX.XXX.20250225004.
高架立体医药库的热湿环境会影响药品的储存及疗效。以天津某高架立体医药冷库为研究对象,研究不同货架布置对温湿度分布的影响。优化了冷库内部气流组织,并结合场协同理论,系统研究了冷库的温湿度分布、温湿度均匀性及制冷效果。结果表明:场协同角可有效用于高架冷库的性能评价。适当增大货架层间距对于医药库的热性能有优化作用,当货架层间距为0.6 m时,平均温度
t
p
为4.56 ℃,温度不均匀系数
K
t
为0.039,平均相对湿度为55.21%,相对湿度不均匀系数为0.015,平均场协同角
α
p
为57.47°,流动换热性能合理。
The temperature and humidity distributions in a pharmaceutical warehouse affect the efficacy of the medicine stored in the warehouse. For a stereoscopically-monitored high-rack medical cold-storage unit in Tianjin, the influence of shelf layout on the temperature and humidity distributions is examined. The internal airflow distribution of the cold storage unit is optimized and field-coordination theory is applied. The temperature and humidity distributions, temperature and humidity uniformity, and refrigeration effect are systematically discussed. Based on the findings, the field synergy angle can be effectively used to evaluate the performance of a high-rack cold storage unit. Increasing the spacing between the shelf layers optimized the unit’s thermal performance. At a shelf-layer spacing of 0.6 m, the av
erage temperature was 4.56 ℃, the temperature inhomogeneity coefficient (
K
t
) 0.039, average relative humidity 55.21%, relative humidity inhomogeneity coefficient 0.015, and the average field synergy angle (
α
p
) 57.47°, resulting in a more uniform and reasonable temperature field.
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本文受陕西省建筑设备科学与地下空间环境国际联合研究中心资助 。
The project was supported by the International Joint Research Center for Building Service Science and Underground Space Environment, Shaanxi, China .
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