Multi-objective optimization of a solar-assisted heat pump for swimming pool heating using genetic algorithm

被引:37
作者
Starke, Allan R. [1 ]
Cardemil, Jose M. [2 ]
Colle, Sergio [1 ]
机构
[1] Univ Fed Santa Catarina, Dept Mech Engn, LEPTEN Lab Energy Convers Engn & Energy Technol, Florianopolis, SC, Brazil
[2] Univ Chile, Dept Mech Engn, Beauchef 851, Santiago, Chile
关键词
Swimming pool heating; Solar energy; Solar-assisted heat pumps; Multi-objective optimization; Genetic algorithm; TRNSYS; ENERGY;
D O I
10.1016/j.applthermaleng.2018.06.067
中图分类号
O414.1 [热力学];
学科分类号
摘要
A proper assessment of heating systems for swimming pools should evaluate the compromise between comfort level and the willingness to pay for it. The present work presents a multi-objective optimization of indirect solar assisted heat pump systems for outdoor swimming pool heating. Four different configurations are reported; (airto-water heat pump and three solar assisted heat pumps, air-to-water, water-to-water and a dual-source); and evaluated in six different locations (three location in Chile: Antofagasta, Santiago, and Concepcion; and three locations in Brazil: Brazilia, Sao Paulo, and Florianopolis). The methodology approach configures two objectives optimization, the minimization of the Annualized Life Cycle Cost (ALCC) and the maximization of the comfort level offered by the swimming pool. The optimization scheme consists of using a combination of tools: the energy-savings potential of i-SAHP are evaluated using the TRNSYS software in combination with GenOpt; and the economic modeling and optimization are performed in the MATLAB environment, using an approximation model and variant of NSGA-II genetic algorithm for building the Pareto frontiers. The optimization results demonstrate that solar-assisted configurations present significant improvements in performance for almost all locations, reaching the same levels of comfort at lower ALCCs when compared with the ASHP configuration.
引用
收藏
页码:118 / 126
页数:9
相关论文
共 28 条
[1]  
Abreu S. L., 2001, RTTC0101 LABSOLARLEP
[2]   Exergy, exergoeconomic and environmental analyses and evolutionary algorithm based multi-objective optimization of combined cycle power plants [J].
Ahmadi, Pouria ;
Dincer, Ibrahim ;
Rosen, Marc A. .
ENERGY, 2011, 36 (10) :5886-5898
[3]   Thermodynamic and exergoenvironmental analyses, and multi-objective optimization of a gas turbine power plant [J].
Ahmadi, Pouria ;
Dincer, Ibrahim .
APPLIED THERMAL ENGINEERING, 2011, 31 (14-15) :2529-2540
[4]  
[Anonymous], 2011, INTRO OPTIMUM DESIGN
[5]   A multi-objective optimization model for building retrofit strategies using TRNSYS simulations, GenOpt and MATLAB [J].
Asadi, Ehsan ;
da Silva, Manuel Gameiro ;
Antunes, Carlos Henggeler ;
Dias, Luis .
BUILDING AND ENVIRONMENT, 2012, 56 :370-378
[6]  
Carrier Corporation, 2009, TECH REP
[7]  
Deb K., 2000, Parallel Problem Solving from Nature PPSN VI. 6th International Conference. Proceedings (Lecture Notes in Computer Science Vol.1917), P849
[8]  
Duffle JA., 2006, Solar engineering of thermal processes, V3rd
[9]   MONITORING AND SIMULATION OF THE THERMAL PERFORMANCE OF SOLAR HEATED OUTDOOR SWIMMING POOLS [J].
HAHNE, E ;
KUBLER, R .
SOLAR ENERGY, 1994, 53 (01) :9-19
[10]  
Jin Y, 2005, SOFT COMPUT, V9, P3, DOI [10.1007/s00500-003-0328-5, 10.1007/S00500-003-0328-5]