固体除湿材料的微波与热风再生性能及模型分析
发布时间:2019-06-07 10:02
【摘要】:空调系统湿负荷约占整个空调系统冷负荷的40%~60%,利用固体除湿材料可有效降低空调系统能耗。固体除湿材料的再生能耗是除湿系统的主要能耗,传统的再生方式存在能耗大、再生效率低等缺点。本文采用微波和热风再生的方法对固体除湿材料的再生性能进行了对比实验,从再生效果和再生能耗两方面进行了分析,并建立了模型。相同状态下的固体除湿材料在热风再生工况50~90℃(功率857~1 204 W)与微波再生功率440~800 W进行对比实验,结果表明:当达到相同的再生度时,热风最大再生速率是微波最大再生速率的49.89%~86.23%,而微波能耗只有热风能耗的25.2%~37.7%,且微波再生平均能源利用率为热风再生的2.51~3.21倍。
[Abstract]:The wet load of air conditioning system accounts for about 40% of the cooling load of the whole air conditioning system. The energy consumption of air conditioning system can be effectively reduced by using solid dehumidification materials. The regeneration energy consumption of solid dehumidification materials is the main energy consumption of dehumidification system. The traditional regeneration method has many shortcomings, such as high energy consumption, low regeneration efficiency and so on. In this paper, the regeneration properties of solid dehumidification materials were compared by microwave and hot air regeneration, and the regeneration effect and energy consumption were analyzed, and the model was established. The solid dehumidification materials in the same state were compared with those of microwave regeneration at 50 掳90 鈩,
本文编号:2494712
[Abstract]:The wet load of air conditioning system accounts for about 40% of the cooling load of the whole air conditioning system. The energy consumption of air conditioning system can be effectively reduced by using solid dehumidification materials. The regeneration energy consumption of solid dehumidification materials is the main energy consumption of dehumidification system. The traditional regeneration method has many shortcomings, such as high energy consumption, low regeneration efficiency and so on. In this paper, the regeneration properties of solid dehumidification materials were compared by microwave and hot air regeneration, and the regeneration effect and energy consumption were analyzed, and the model was established. The solid dehumidification materials in the same state were compared with those of microwave regeneration at 50 掳90 鈩,
本文编号:2494712
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