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作 者:李鹏[1,2] 肖辉[2] 邵頲[3] LI Peng;XIAO Hui;SHAO Tin(China Construction Eighth Engineering Division Co.,Ltd.,Shanghai 201206,China;Department of Electronic and Information Engineering,Tongji University,Shanghai 201804,China;Shanghai Huajian Architecture,Engineering&Consulting Co.,Ltd.,Shanghai 200041,China)
机构地区:[1]中国建筑第八工程局有限公司,上海201206 [2]同济大学电子与信息工程学院,上海201804 [3]上海华建工程建设咨询有限公司,上海200041
出 处:《电气应用》2023年第2期1-8,共8页Electrotechnical Application
摘 要:低碳建筑是解决能源危机的重要手段,阻碍低碳建筑发展的主要原因在于高昂的成本,而成本居高不下的关键则在于储能设备。为了解决储能设备成本过高问题,讨论了建筑能耗各组成部分,并给出了由水蓄能设备代替蓄电池为空调类负荷储能的解决方案。通过采用该方案,系统能效得以提高11.75%;通过分析具体案例,给出了储能设备投资费用节省数据,同时具有节约机房面积和安全环保的优点。由此表明,未来蓄电池结合水蓄能设备将是低碳建筑储能系统重要的选择方案。Low-carbon buildings are an important means to solve the energy crisis. However, the main reason that hinders the development of low-carbon buildings is the high cost, and the key to the high cost is energy storage equipment. In order to solve the cost problem of energy storage equipment, this paper discusses the components of building energy consumption, and gives a solution to replace the battery with water storage equipment for air conditioning load energy storage. By adopting this scheme, the energy efficiency of the system can be improved by 11.75%. This paper also analyzes specific cases, and gives the data of saving the investment cost of energy storage equipment, and at the same time, it can also bring the advantages of saving the area of the machine room, safety and environmental protection. The discussion in this paper shows that in the future, batteries combined with water storage devices will be an important option for low-carbon building energy storage systems.
分 类 号:TM91[电气工程—电力电子与电力传动] TU201.5[建筑科学—建筑设计及理论]
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