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Numerical Analysis on Charging Performance of the Macro-Encapsulating Combined Sensible-Latent Heat Storage System with Structural Parameters
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作者 WANG Wei PAN Zhenfei +2 位作者 WANG Jingfu WU Yuting MA Chongfang 《Journal of Thermal Science》 SCIE EI CAS CSCD 2024年第3期1026-1036,共11页
For combined sensible-latent heat storage system(CSLHS)(termed as the hybrid configuration),macro encapsulation can effectively solve the leakage problem of PCMs.However,due to the poor thermal conductivity of PCMs,th... For combined sensible-latent heat storage system(CSLHS)(termed as the hybrid configuration),macro encapsulation can effectively solve the leakage problem of PCMs.However,due to the poor thermal conductivity of PCMs,the charging performance of the hybrid configuration slightly increases compared to the solid structure(with only sensible materials).Meanwhile,the natural convection in the PCMs zone could improve the charging performance.So,how to improve natural convection intensity is a key issue for the CSLHS by macro encapsulating.It is found that adding fins can significantly enhance natural convection and accelerate the melting of PCM.In this paper,we proposed the hybrid configuration with fins built-in by macro encapsulation,and analyzed its charging performance with different fin structural parameters in the PCM zone by CFD simulation.In the case,the sensible heat storage material is high-temperature concrete and the PCM is a low-melting-point mixed molten salt.We analyzed the effects of fin number,fin length and fin thickness on the charging performance of the hybrid configuration respectively.From the result,the charging performance increases with the fin number,but the increase rate gradually decreases.When the fin number is 6,the charging performance increases by 20.18%compared to the situation without fin.The charging performance increases gradually with the fin length.Compared with the hybrid configuration without fin,for each 10 mm increase in fin length,its charging performances increase by 4.09%,5.26%,7.02%,8.77%,11.70%,and 15.79%,respectively.Different from number and length of fins,the effect of thickness on the charging performance is very small.When the fin thickness increased from 1 mm to 4 mm,the charging performance only increased by 2.3%.It indicates that the main reason for the improving the charging performance is to increase the natural convection intensity by dividing the PCM zone through fins.These results show that the charging performance of the CSLHS with macro encapsulation can be im 展开更多
关键词 macro-encapsulation hybrid configuration natural convection structural parameter charging performance
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相变墙房间夏季夜间通风效果实验 被引量:12
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作者 冯国会 韩淑伊 +2 位作者 刘馨 黄凯良 李慧星 《沈阳建筑大学学报(自然科学版)》 CAS 北大核心 2013年第4期693-697,共5页
目的分析相变储能房间夏季夜间通风的降温效果,在节能的前提下提高房间的舒适度.方法笔者将癸酸和月桂酸质量比66∶34的低温共熔物封装到PE管中制作相变储能墙体,吸收夏季夜间室外空气的冷量,以降低白天房间室内温度.结果相变墙房间白... 目的分析相变储能房间夏季夜间通风的降温效果,在节能的前提下提高房间的舒适度.方法笔者将癸酸和月桂酸质量比66∶34的低温共熔物封装到PE管中制作相变储能墙体,吸收夏季夜间室外空气的冷量,以降低白天房间室内温度.结果相变墙房间白天平均温度和温度波动情况都明显优于普通房间,相同通风策略下,相变房间白天降温效果比普通房间更加明显,平均温度降低了2.16℃,相变房间降温幅度是普通房间的2倍.结论在白天使室内与相变墙之间进行气流循环,能更加充分利用相变材料贮存的冷量,维持室内温度;相变储能墙体与夜间通风技术相结合,有助于降低室内白天温度. 展开更多
关键词 相变墙 夜间通风 宏观封装 蓄能 节能
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火墙环境下有机相变材料封装盒体的导热增强 被引量:4
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作者 高小建 李双欣 连纪峰 《哈尔滨工业大学学报》 EI CAS CSCD 北大核心 2016年第6期138-142,共5页
为提高火墙环境下有机相变材料宏观封装盒体的吸热效率,通过实验室恒温箱模拟火墙环境条件,研究了添加不同数量导热翅片和填充泡沫铜对有机相变材料宏观封装盒体吸放热过程的影响.结果表明:随着导热翅片数量增加,不同厚度封装盒体中相... 为提高火墙环境下有机相变材料宏观封装盒体的吸热效率,通过实验室恒温箱模拟火墙环境条件,研究了添加不同数量导热翅片和填充泡沫铜对有机相变材料宏观封装盒体吸放热过程的影响.结果表明:随着导热翅片数量增加,不同厚度封装盒体中相变材料的完全相变时间明显缩短,而导热翅片数量过多时会显著降低厚度较小封装盒体的有效放热时间;填充泡沫铜使宏观封装盒体中相变材料的温度分布更加均匀,同时可进一步降低厚度较大封装盒体中相变材料的完全相变时间;通过添加15个导热翅片和填充泡沫铜可使45 mm厚封装盒体中相变材料的完全相变时间缩短64.8%,此方法可有效解决火墙环境中大容量宏观封装有机相变材料盒体的吸热缓慢问题. 展开更多
关键词 有机相变材料 宏观封装 导热翅片 泡沫铜 吸放热规律
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