Optimization of thermoelectric modules with the method of genetic algorithms
2010
0 views
0 downloads
Advisor: Prof. Dr. Raşit Ahıska
Abstract (EN)
In this doctoral dissertation, 6 different programs have been developed by employing genetic algorithm method in order to design low-cost thermoelectric modules which maximize cooling capacity, heat difference and the coefficient of performance. The software of these programs has been developed by Java programming language in NetBeans 7.6.1. environment. The initial population selected in this study is 300 thermoelectric modules. Optimization of the module has been carried out depending on different operations regimes of thermoelectric module defined by the heat of the hot surface, the quantity of the semiconductor modules for constant but different volumes modules, the total volume of the space, the arm area, the arm height and the current passing through the arms. As a result of the process of optimization, the optimal values of TE module the coefficient of performance, maximum cooling capacity, and minimum cost have been obtained. The application of the program was performed taking into the geometric parameters for each of the 36 thermoelectric modules produced by Melcor Company and maximum cooling capacities were obtained. Results obtained have been compared with the cooling capacity projected by Melcor Company. The results of the comparison of the cooling capacity of modules produced by Melcor Company and results obtained by optimization have been found out to be very close.
Author
Mitra Salimi Altan
Institution
How to Cite
Mitra Salimi Altan (Doctorate thesis). Optimization of thermoelectric modules with the method of genetic algorithms, 2010, Gazi University.
Keywords
License
Tüm Hakları Saklıdır
This work is shared under the specified license terms.
More theses from Gazi University
- Occupational accident analysis and modelling in oil and gas drilling sector Turkey(2021)
- XVI. yüzyıl Anadolu'sunda Oğuzların Karkın Boyu(2004)
- Sharing of real life geometry samples via a social learning environment: A case study(2021)
- Evaluatıon of calcium hydroxide removal efficiency of two different irrigation activation techniques from artificial internal resorption cavities prepared at different root levels(2021)
- Experimental development of the interfacial bond-slip model between textile reinforced mortar strips and masonry walls(2025)
- The use of verbal memory in the context of sustainability and power at the museums of Turk(2010)
