1Bahnfleth W P,Peyer E.Comparative analysis of variable and constant primary flow chilled-water-plant performance[J].Heating,Piping,Air Conditioning Engineering,2001,73(4):41-50.
2Jin X Q,Du Z M,Xiao X K.Energy evaluation of optimal control strategies for central VWV chiller systems[J].Applied Thermal Engineering,2007,27(5-6):934-941.
3Chang Yungchung,Chen Wuhsing.Optimal chilled water temperature calculation of multiple chiller systems using Hopfield neural network for saving energy[J].Energy,2009,34(4):448-456.
4Chang Yungchung.Application of Hopfield Neural Network to the optimal chilled water supply temperature calculation of air-conditioning systems for saving energy[J].International Journal of Thermal Sciences,2009,48(8):1649-1657.
5Ma Zhenjun,Wang Shengwei.Energy efficient control of variable speed pumps in complex building central air-conditioning systems[J].Energy and Buildings,2009,41(2):197-205.
6Gordon J M,Ng K C,et al.How varying condenser coolant flow rate affects chiller performance:thermodynamic modeling and experimental confirmation[J].Applied Thermal Engineering,2000,20:1149-1159.
7Taylor S T.Degrading chilled water plant delta-T:causes and mitigation[J].ASHRAE Trans.,2002,108(1):641-653.
8Yue Ming Li,Jing Yi Wu,Sumio Shiochi.Experimental validation of the simulation module of the water-cooled variable refrigerant flow system under cooling operation[J].Applied Energy,2010,87(5):1513-152.
9Li Yueming,Wu Jingyi,Sumio Shiochi.Modeling and energy simulation of the variable refrigerant flow air conditioning system with water-cooled condenser under cooling conditions[J].Energy and Buildings,2009,41(9):949-957.