Smart Control System to Optimize Time of Use in a Solar-Assisted Air-Conditioning by Ejector for Residential Sector

被引:3
|
作者
Avedian-Gonzalez, Giovanna [1 ]
Gonzalez-Potes, Apolinar [1 ,2 ]
Ibarra-Junquera, Vrani [2 ]
Mata-Lopez, Walter A. [1 ]
Escobar-del Pozo, Carlos [1 ]
机构
[1] Univ Colima, Fac Elect & Mech Engn, Km 9 Carretera Colima Coquimatlan, Coquimatlan Col 28400, Mexico
[2] Univ Colima Tecnoparque CLQ, Agrobiotechnol Lab, Colima 28629, Mexico
来源
APPLIED SCIENCES-BASEL | 2018年 / 8卷 / 03期
关键词
driven solar collector; fuzzy control; ejector cooling systems; COOLING SYSTEM; REFRIGERATION SYSTEM; PERFORMANCE; ENERGY; BUILDINGS; STRATEGIES; COMFORT; CFD;
D O I
10.3390/app8030350
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The present work provides a series of theoretical improvements of a control strategy in order to optimize the time of use of solar air-conditioning by an ejector distributed in multiple solar collectors of vacuum tubes for the residential sector, which will allow us to reduce carbon-dioxide emissions, costs and electrical energy consumption. In a solar ejector cooling system, the instability of the solar source of energy causes an operational conflict between the solar thermal system and ejector cooling cycle. A fuzzy control structure for the supervisory ejector cycle and multi-collector control system is developed: the first control is applied to control the mass flow of the generator and the evaporator for different cooling capacities (3, 3.5, 4, 4.5 and 5 kW) and set a temperature reference according to the operating conditions; the second is applied to keep a constant temperature power source that feeds the low-grade ejector cooling cycle using R134aas refrigerant. For the present work, the temperature of the generator oscillates between 65 degrees C and 90 degrees C, a condenser temperature of 30 degrees C and an evaporator temperature of 10 degrees C. For the purpose of optimization, there are different levels of performance for time of use: the Mode 0 (economic) gives a performance of 17.55 h, Mode 5 (maximum cooling power) 14.86 h and variable mode (variable mode of capacities) 16.25 h, on average. Simulations are done in MATLAB-Simulink applying fuzzy logic for a mathematical model of the thermal balance. They are compared with two different types of solar radiation: real radiation and disturbed radiation.
引用
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页数:24
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