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机构地区:[1]广东申菱空调设备有限公司,广东佛山528313
出 处:《制冷》2013年第2期5-9,共5页Refrigeration
基 金:2011年省民营科技企业创新项目(2011B070500019)
摘 要:本文在转轮除湿与制冷除湿系统上增加热回收系统,降低转轮再生功耗的同时,实现转轮再生排风的循环利用,减少转轮再生排风管道,节省工程安装量。通过实验测试,与普通转轮复合除湿系统的相比,不同进风工况下,热回收型转轮复合除湿系统的总功耗降低约6%~20%。热回收型转轮复合除湿系统中热回收量约占总功耗的22%,其中板式热回收占总功耗的18%,冷凝热回收约占总功耗的4%,处理再生排风的功耗约占总功耗的8%,因此也可仅增加板式热回收来实现再生排风的循环利用。Adding heat recovery system to the refrigerating rotary combined dehumidification system, the reactiva tion air of rotor dehumidifier becomes recycled, and the power consumption on reactivation also be decreased; At the same time, the reactivation air ducts are reduced, which can save the work of installation. The test data under different conditions confirm : The power consumption of the heat recovery type refrigerating rotary united dehumidi fication system is 6 20% less than the common type. The recovered energy is about 2:2% of the total power consump tion in the heat recovery type refrigerating rotary united dehumidification system, 18% of which is belong to plate type heat recovery, while the other 4% is condensing heat recovery. The power consumption on handing reactivation air is about 8% of the total power consumption, so it is feasible to recycle the exhaust air of rotor simply by increas ing the plate type heat recovery exchanger.
关 键 词:转轮除湿 制冷除湿 板式热回收 冷凝热回收 实验研究
分 类 号:TU834[建筑科学—供热、供燃气、通风及空调工程]
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