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南方地区星级酒店空调通风系统节能改造适用型技术研究与应用集成——广州白天鹅宾馆空调通风系统节能改造项目实施方案 被引量:14

Research and application integration of applicable technology for energy efficiency reformation of air-conditioning system in star hotels in south China—Energy efficiency reformation scheme of air conditioning and ventilation system in Guangzhou White Swa
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摘要 以广州白天鹅宾馆为例,以现有能耗数据为基础,分析了南方地区既有星级酒店的用能特点,发现该酒店通风空调系统能耗最大,占常规能耗的66.9%;其中空调主机能耗所占空调通风系统总能耗的比例最大,为49.66%;其次为空调末端(空气处理机、新风处理机、风机盘管)能耗,为25.54%;第3位为水泵能耗,为14.39%。为此,有针对性地提出节能改造对策:采用高效制冷机,冷水大温差(8℃),冷水泵、冷却水泵变频,直流无刷风机盘管变风量控制,高效节能风机、空气处理机组,双工况高效水-水热泵热回收热水系统等措施和技术,逐一论证了其实现的可行性及节能效果。通过分析酒店空调通风系统各部分节能效益,获得了空调通风系统节能改造的节能目标。 Taking the hotel as an example,analyses the characteristics of energy consumption in existing star hotels in south China based on the existing energy consumption data.Finds that the energy consumption of HVAC system is the largest part,accounting for about 66.9% of the total routine energy,in which the energy consumed by the chillers is the largest part,accounting for 49.66%,and followed by the air-conditioning terminal devices(AHU,PAU,FCU),25.54% and the water pumps,14.39%.Puts forward some countermeasures for energy efficiency reformation appropriately,including applying higher-efficiency chillers,large chilled water temperature difference(8 ℃),frequency control for chilled water and cooling water pumps,variable air volume control for fan coil units with brushless DC motors,higher-efficiency fans and air handling units,and higher-efficiency and double operating mode water-water heat pump heat recovery hot water system.Discusses feasibility and effects of these countermeasures one by one.And obtains the energy saving goal of HVAC system reformation after analysing energy-saving effects of each part in HVAC system.
出处 《暖通空调》 北大核心 2012年第6期1-6,共6页 Heating Ventilating & Air Conditioning
基金 广州市城乡建设委员会节能专项资金项目(编号:J-2011-17)
关键词 南方地区 星级酒店 能耗分析 适用型节能技术 大温差供冷 变频控制 热回收 自动控制 方案 south China area star hotel energy consumption analysis applicable energy-saving technology large temperature difference cooling frequency control heat recovery automatic control scheme
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参考文献4

  • 1清华大学建筑节能研究中心.中国建筑节能年度发展研究报告2009[M].北京:中国建筑工业出版社,2009.
  • 2宋应乾,曾艺,龙惟定.建筑能耗模拟在能源审计中的应用[J].暖通空调,2011,41(3):137-142. 被引量:12
  • 3公共建筑节能设计标准编委会.公共建筑节能设计标准宣贯辅导教材[M].北京:中国建筑工业出版社,2005.
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