重庆大学 城市建设与环境工程学院,三峡库区生态环境教育部重点实验室,重庆,400030
纸质出版:2011
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刘猛, 钱发, MKINNELLKeith, 等. 夏热地区商场类建筑集中空调系统全新风运行性能分析[J]. 土木与环境工程学报(中英文), 2011,33(3):94-99.
LIU Meng, QIAN Fa, MCKINNELL Keith, et al. Performance in Full Fresh Air Mode of Centralised Air-conditioning System for Shopping Malls in Chinas Hot Summer Region[J]. Journal of Civil and Environmental Engineering, 2011, 33(3): 94-99.
刘猛, 钱发, MKINNELLKeith, 等. 夏热地区商场类建筑集中空调系统全新风运行性能分析[J]. 土木与环境工程学报(中英文), 2011,33(3):94-99. DOI: 10.11835/j.issn.1674-4764.2011.03.017.
LIU Meng, QIAN Fa, MCKINNELL Keith, et al. Performance in Full Fresh Air Mode of Centralised Air-conditioning System for Shopping Malls in Chinas Hot Summer Region[J]. Journal of Civil and Environmental Engineering, 2011, 33(3): 94-99. DOI: 10.11835/j.issn.1674-4764.2011.03.017.
分析了中国夏热地区的室外气候条件
对于冬季
有近乎100%的时间可以采用全新风模式
而过渡季节会有一半左右的时间可以采用全新风模式
从而全年可以减少30%~60%的人工冷源运行时间.通过对焓值控制和温度控制2种调控模式的分析
研究了不同室内负荷强度、不同通风量和不同室内空气温湿度设定值条件下的调控方案.研究发现:室内负荷越大
采用全新风模式的节能效果越好;送风量宜设置为6~8 h-1;室内空气参数对节能效果影响很大
考虑到室内外温差对人体热舒适的影响
可以考虑不同季节不同的室内空气参数设置;对于调控模式
冬季和过渡季节可采用焓值控制模式;夏季宜采用温度控制模式.采用全新风模式
每年可以实现100~180 kWh/m2的节能效果
从而产生30~50 kg/m2的碳减排量.
Based on the analysis of the outdoor weather condition in Chinas hot summer region
it is found that the full fresh air mode can work in the whole winter and half of the time in transition season. Thus
about 30%-60% runtime of the artificial cold source can be reduced. It studies the control strategies at different conditions of indoor load
ventilation and indoor air temperature and humidity by analyzing two control modes-enthalpy control and temperature control. It shows that the higher the indoor load is
the more efficient the full fresh air mode is. And the airflow is better to be set as 6~8 h-1. Since the indoor air parameter has great influence on energy saving
it is necessary to set different indoor air parameters in different seasons by taking the effect of temperature difference on human thermal comfort into consideration. It is also found that the enthalpy control mode can be used in winter and in transition season
while the temperature control mode can be applied in summer. If the full fresh air mode were adopted
it would cut down the energy consumption by 100~180 kWh/m2 and the carbon emission by 30~50 kg/m2 each year.
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