DocumentCode :
237521
Title :
Optimization of design parameters of glazed hybrid photovoltaic thermal module using genetic algorithm
Author :
Singh, Sushil ; Agrawal, Sanjay ; Avasthi, D.V.
Author_Institution :
C.M.S. Gov. Girls´ Polytech., S.V.S. Univ., Meerut, India
fYear :
2014
fDate :
28-29 Nov. 2014
Firstpage :
405
Lastpage :
410
Abstract :
The aim of this paper is to maximize the overall exergy efficiency of single channel photovoltaic thermal module. The solar panel (PV module) generally gives electrical efficiency in the range of 7% to 12%, the rest energy being dissipated in the form of heat losses. To recover thermal energy from the module photovoltaic thermal system has been simulated. The analysis in this work investigates the influence of seven important parameters on the efficiency of PVT solar system which inter alia includes length and depth of the channel, depth of insulation, velocity of fluid in the channel, depth of the tedlar and glass, and temperature of the fluid at the inlet on the basis of which optimization of the exergy efficiency of the module is done. Attempt is made to develop mathematical model and optimize parameters of glazed hybrid single channel photovoltaic thermal (PVT) module. The relevant mathematical equations for the glazed hybrid single channel photovoltaic thermal module are derived and genetic algorithm (GA) used to optimize overall exergy efficiency of the module. Only the parameters that could physically be varied are included in this optimization analysis while naturally occurring parameters like ambient temperature and solar intensity which vary naturally are excluded from design parameters in the algorithm. During second stage following first optimization only one parameter is varied at a time in the course of analysis while others are kept constant at the previously obtained optimal value.
Keywords :
exergy; genetic algorithms; mathematical programming; parameter estimation; solar cells; GA; electrical efficiency; energy dissipation; exergy efficiency parameter optimization; genetic algorithm; glazed hybrid single channel PVT solar system efficiency; heat losses; mathematical equation; mathematical model; photovoltaic thermal module design parameter optimization; solar panel; thermal energy recovery; Fluids; Genetic algorithms; Heat transfer; Photovoltaic systems; Solar heating; Thermal energy; Genetic Algorithm; PVT module; Single objective optimization;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Computational Intelligence on Power, Energy and Controls with their impact on Humanity (CIPECH), 2014 Innovative Applications of
Conference_Location :
Ghaziabad
Type :
conf
DOI :
10.1109/CIPECH.2014.7019059
Filename :
7019059
Link To Document :
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