MATHEMATICAL MODELING of THERMOELECTRIC GENERATOR by REGRESSION ANALYSIS

Abdullah Cem AĞAÇAYAK, Hakan TERZİOĞLU, Süleyman NEŞELİ, Gökhan YALÇIN

Öz


As countries grow, their need and demand for energy grow as well. The development of the technology and industry, which come to exist due to the growth of the country, a brings about a rise in energy consumption, as well as increasing the damage to the environment. Therefore, as the environmental and energy-related issues started to emerge more and more, we have seen an increase in the number of studies on energy production and its effects on the environment. Such studies highlight the renewable energy sources among the non-polluting alternative energy sources. Geothermal energy, particularly, shines out among the other renewable energy sources. It is a clean energy source that has been sustained since the Earth was formed. This study focuses on the design of a device named thermoelectric generator (TEG) that converts a renewable energy source, geothermal energy, directly into electric energy. Hence, we ran a simulation of a regression analysis and mathematical model on the thermoelectric modules TEC1-12706 and TEC1-12710, which can easily be found on the market, and then crosschecked the simulation results of different temperature, pressure, and water flow with experiments. The values for current, voltage, power, hot and cold surface temperatures, and the temperature difference between hot and cold surfaces were constantly monitored and recorded. The results of the experiment were compared using the regression analysis method. For the device TEC1-12706, error percentage of 9 experiments was 16.52% while it was 9.70% for TEC1-12710. At 90°C temperature difference, for TEC1-12706, output voltage was Vmax = 2.03V, output power Pmax = 2.17W, and efficiency 32.15%. For TEC1-12710, output voltage was Vmax = 2.11V, output power Pmax = 3.42W, and efficiency 38.53% [1,2].

Anahtar Kelimeler


Geothermal energy; thermoelectric generator (TEG); modeling; regression analysis

Tam Metin:

PDF (English)

Referanslar


Ağaçayak AC, Tezioğlu H. Analysis of Thermoelectric Cooler Used to Produce Electrical Energy in terms of Efficiency, Academic Studies in Engineering, Gece Publishing, 2018;26649:111-120.

Tezioğlu H, Servi S, Ağaçayak AC. An Overview of Thermoelectric Generators and Mathematical Modeling, Academic Studies in Engineering, Gece Publishing, 2018;26649:133-148.

Miyata S, Yoshiwara Y, Watanabe H, Yamauchi K, Makino K, Yamaguchi S. Evaluation of Thermoelectric Performance of Peltier Current Leads Designed for Superconducting Direct-Current Transmission Cable Systems, IEEE Transactions on Applied Superconductivity, 2016;26:1-4.

Moteiei P, Yaghoubi M, Goshtashbirad E, Vadiee A. Two-dimensional unsteady state performance analysis of a hybrid photovoltaic-thermoelectric generator, Renewable Energy, 2018;119:551-565.

Neşeli S, Terzioğlu H, Ağaçayak AC, Yalçın G. Electrical Power Generation by Thermoelectric Generator Using Geothermal energy and The Low-Power Dc-Dc Buck_Boost Converter Application, In Graduate School of Natural and Applied Sciences n (BAP), Selçuk University, 2017.

Kim TY, Kim J. Assessment of the energy recovery potential of a thermoelectric generator system for passenger vehicles under various drive cycles, Energy, 2018;143:363-371.

Kowalski TZ. Gas gain in low pressures proportional counters filled with TEG mixtures, Radiation Measurements, 2018;108:1-19.

Nithyanandam K, Mahajan RL. Evaluation of metal foam based thermoelectric generators for automobile waste heat recovery, International Journal of Heat and Mass Transfer, 2018;122:877-883.

Zhang C, Li K, Deng J, Song S. Improved Realtime State-of-Charge Estimation of LiFePO4 Battery Based on a Novel Thermoelectric Model, IEEE Transactions on Industrial Electronics, 2017;64:654-663.

Zhang H, Xu T, Hashimoto S, Watanabe T. The possibility of mW/cm2-class on-chip power generation using ultra small Si nanowire-based thermoelectric generators, IEEE Transactions on Electron Devices, 2018;65:2016-2023.

Ağaçayak AC. Investigation of The Factors Affecting The Electric Energy Production of Thermoelectric Generators by Using Geothermal Energy, Post Graduate Thesis, Afyon Kocatepe Univ., Institute of Science and Technology, 2017.

Qing S, Rezania A, Rosendahl LA, Gou X. Design of flexible thermoelectric generator as human body sensor, Materials Today: Proceedings, 2018;5:10338-10346.

Yalçın G., Selek M., Terzioğlu H., 2016, A Plate Design to Produce Maximum Energy by Thermoelectric Generators, In UMYOS 5th Internatıonal Vocational School Symposium, Prizren, 1:909-916.

Ağaçayak A.C., Çimen H., Neşeli S., Yalçın G., 2017, Electric Power Generation with Thermoelectric Generator, In UMYOS 6th International Vocational School Symposium, Saray Bosna, 2:541-549.

Ağaçayak AC, Neşeli S, YalçınG, Tezioğlu H. The Impact of Different Electric Connection Types in Thermoelectric Generator Modules on Power, International Journal of Engineering Research & Science (IJOER), 2017;3:2395-6992.

Ahıskas R, Mamur H, Uliş M. Modelling and Experimental Study of Termoelectric, J. Fac. Eng. Arch. Gazi Univ. 2011;26:889-896.

Ağaçayak AC, Tezioğlu H, Çimen H, Neşeli S, Yalçın G. The Effects of Speed and Flow Rate on Power in Thermoelectric Generators, International Journal of Intelligent Systems and Applications in Engineering, 2018;6:65-71.

Kotsur M. Optimal Control of Distributed Parameter Systems with Application to Transient Thermoelectric Cooling, Advances in Electrical and Computer Engineering, 2015;15:117-122.

Kwan TH, Xiaofeng W, Qinghe Y. Multi-objective genetic optimization of the thermoelectric system for thermal management of proton exchange membrane fuel cells, Applied Energy, 2018;217:314-327.

Çimen H., Ağaçayak A.C., Neşeli S., Yalçin G., 2017, Comparison of Two Different Peltiers Running as Thermoelectric Generator at Different Temperatures, In 2017 International Renewable and Sustainable Energy Conference (IRSEC), 1-6.

IEEE. Available: https://ieeexplore.ieee.org/abstract/document/8477309

Ağaçayak AC, Tezioğlu H, Neşeli S, Yalçın G. Small Power Wind Turbine Design, Academic Studies in Engineering, Gece Publishing, 2018;26649:121-130.

H. Tezioğlu, S. Neşeli and G. Yalçın, An Overview of Thermoelectric Generators and Their Applications, Academic Studies in Engineering, Gece Publishing, 2018;26649:149-160.


Madde Ölçümleri

Ölçüm Çağırılıyor ...

Metrics powered by PLOS ALM

Refback'ler

  • Şu halde refbacks yoktur.


Creative Commons License
This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License.

Selçuk-Teknik Dergisi  ISSN:1302-6178