西安交通大学能源与动力工程学院,西安,710049
网络首发:2008-05-10,
纸质出版:2008
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曹锋 1, 王凯 1, 邢子文 1, 等. 回收利用冷凝热的恒温恒湿型空调机试验研究[J]. 西安交通大学学报, 2008,42(5):524-527+550.
曹锋 1, 王凯 1, 邢子文 1, et al. Experimental Study on Constant Temperature and Humidity Air-Conditioner with Recovering Condensing Heat[J]. 2008, 42(5): 524-527+550.
对采用电加热、并联式及串联式回收冷凝热3种再热方式的恒温恒湿空调机组运行特性进行试验研究
分析讨论了设定不同温、湿度值对3种再热方式控制精度的影响
对3种再热方式的功耗进行了对比分析.试验分析表明:电加热是温、湿度控制精度最高、耗能最高的一种再热方式; 与采用冷凝热回收系统相比
采用电加热方式的恒温、恒湿空调机组能耗降低30%左右
是一种节能的再热方式
并联式系统的功耗略低于串联式系统; 当并联式冷凝热回收系统设定的温度为18~28 ℃、相对湿度在45%~70%的范围内时
温度和相对湿度的控制精度可以达到±1.0 ℃和±8%; 对于串联式系统
当设定温度低于18 ℃时
系统控制存在盲点
但当设定温度升高至23 ℃后
机组控制精度明显提高
控制精度高于并联式系统.
Experiment was conducted to investigate the operation characteristics of a constant temperature and humidity air-conditioner with electricity heating
serial and parallel connection condensing heat recovering. The influence of setting value of temperature and relative humidity on the control accuracy was analyzed. Comparison of the power consumption for the air-conditioner using the three heating ways was performed. The methods for improving the control accuracy of constant temperature and humidity air-conditioner with condensing heat recovered were also discussed. The experimental results show that the temperature and humidity control accuracy with electricity heating mode is the highest
while the energy consumption is the greatest. By adopting condensing heat recovered
the power consumption of the constant temperature and humidity air-conditioner can be reduced by about 30%. The energy consumption with the parallel connection mode is slightly lower than that with the serial connection mode. When the setting value of temperature and relative humidity is 18-28 ℃and 45%-70%
the control accuracy with the parallel connection mode can be in the range of ±1 ℃ for temperature and ±8% for relative humidity. With the serial connection mode
when the setting temperature is below 18 ℃
the system control of the temperature and humidity can not reach the accuracy required. However
the control accuracy is improved obviously and is higher than that with the parallel connection type when the temperature is higher than 23 ℃.
ENGDAHL F, JOHANSSON D. Optimal supply air temperature with respect to energy use in a variable air volume system [J]. Energy and Buildings,2004,36(3):205-218.
JASSIM R K, KHIR T, GHAFFOUR N. Thermoeconomic optimization of the geometry of an air conditioning precooling air reheater dehumidifier [J]. International Journal of Energy Research,2006,30(4):237-258.
PAARPORN S. Runaround loop heat recovery with dehumidification system [J]. ASHRAE Journal, 1999, 4(6):6-8.
BRUSEWITZ G H, STONE M L. Microcomputer controlled desiccant dehumidifier [J]. Transactions of the ASAE, 1987, 30(2):459-463.
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