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作 者:习宴澳明 江海昊 黄招彬 李运泽[1] XI Yan'aoming;JIANG Haihao;HUANG Zhaobin;LI Yunze(School of Aeronautic Science and Engineering,Beihang University,Beijing 100083,China;GD Midea Air-Conditioning Equipment Co.,Ltd.,Foshan 528311,Guangdong Province,China)
机构地区:[1]北京航空航天大学航空科学与工程学院,北京100083 [2]广东美的制冷设备有限公司,广东佛山528311
出 处:《动力工程学报》2022年第11期1099-1106,共8页Journal of Chinese Society of Power Engineering
摘 要:为了响应低碳环保的家庭能源需求,提出了一种多能并用、多能联蓄的低碳家庭能源保障与管理新模式,并在传统空调基础上增设了与冷、热储罐相连的前置换热器模块,通过数学建模对系统性能进行仿真分析。结果表明:低碳能量综合保障的方式能大幅降低电网压力;在相同送风温度的情况下,冷热电协同存储与前置蓄能空调相结合的方式具有更好的制冷(制热)效果。In order to respond to low-carbon and environmentally friendly household energy demand,a new energy security and management mode of low-carbon household with multi-energy and multi-energy co-storage was proposed.On the basis of the traditional air conditioner,a front heat exchanger module connected with the cold and hot storage tanks was added.The system performance was simulated through mathematical modeling.Results show that the method of integrated supply of low-carbon energy can greatly relieve the pressure of power grid operation.Better cooling or heating performance can be achieved by the combination of cooling,heating and electricity co-storage and pre-storage air conditioning under the same supply air temperature.
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