Statistical Approach to Improve the Efficiency of Air Conditioning System Performance in Changeable Climatic Conditions

E. Trushliakov, M. Radchenko, A. Radchenko, S. Kantor, Zongming Yang
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引用次数: 17

Abstract

A statistical approach to improve the performance of air conditioning system with taking into account the current changeable climatic conditions has been proposed. Accoding to this methodological approach the optimum designed heat load, matching current changeable climatic conditions and providing efficient performance of air conditioning system with maximum annual refrigeration effect, has been defined as a result of statistical treatment of data sets of hourly refrigeration outputs year round. According to this approach a value of optimum designed total heat load on the air conditioning system and corresponding refrigeration capacity of refrigeration machine providing the maximum annual refrigeration capacity output and a value of stable heat load (corresponding refrigeration capacity) as designed basic heat load covered with high efficiency performance of refrigeration machine in nominal mode are calculated. The values of unstable heat loads as boost loads for ambient air precooling covered with low efficiency performance of refrigeration machine in partial modes that cause energetic losses are calculated by remainder principle – as difference between optimum designed total refrigeration capacity, providing the maximum annual refrigeration output, and a value of stable heat load as designed basic heat load. The operation of refrigeration machine in partial modes needs application of energy conserving methods of air conditioning as an example with accumulation of excessive refrigeration capacity at decreased current heat loads and its using at increased current heat loads or application of expensive inventor compressors to control motor speed matching current changeable heat loads.
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气候变化条件下提高空调系统性能效率的统计方法
提出了一种考虑当前多变气候条件下提高空调系统性能的统计方法。根据该方法方法,通过对全年每小时制冷输出数据集进行统计处理,确定了最优设计热负荷,以匹配当前多变的气候条件,并提供空调系统的高效性能和最大的年制冷效果。根据该方法,计算出提供最大年制冷量输出的空调系统最佳设计总热负荷值和制冷机相应的制冷量,以及标称模式下兼顾制冷机高效率性能的作为设计基本热负荷的稳定热负荷值(相应的制冷量)。采用余数原理计算制冷机部分模式下低效率环境空气预冷增压负荷的不稳定热负荷值,即提供最大年制冷量的最佳设计总制冷量与设计基本热负荷的稳定热负荷值之差。制冷机在部分模式下的运行需要应用空调的节能方法,例如,在减少的电流热负荷下积累过量的制冷量,并在增加的电流热负荷下使用,或者应用昂贵的inventor压缩机来控制电机转速,以匹配当前可变的热负荷。
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