New Concept of Power Generation Using TEGs: Thermal Modeling, Parametric Analysis, and Case Study
In this manuscript, an innovative concept of producing power from a thermoelectric generator (TEG) is evaluated. This concept takes advantage of using the exhaust airflow of all-air heating, ventilating, and air-conditioning (HVAC) systems, and sun irradiation. For the first step, a parametric analy...
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doaj-bad3850fabf647109e39d057c3d9cfbe2020-11-25T02:26:29ZengMDPI AGEntropy1099-43002020-04-012250350310.3390/e22050503New Concept of Power Generation Using TEGs: Thermal Modeling, Parametric Analysis, and Case StudyAhmad Faraj0Hassan Jaber1Khaled Chahine2Jalal Faraj3Mohamad Ramadan4Hicham El Hage5Mahmoud Khaled6Energy and Thermofluid Group, Lebanese International University (LIU), Bekaa 1801, LebanonEnergy and Thermofluid Group, International University of Beirut BIU, Beirut 1001, LebanonElectrical and Computer Engineering Department, Beirut Arab University, Debbieh 115020, LebanonEnergy and Thermofluid Group, International University of Beirut BIU, Beirut 1001, LebanonEnergy and Thermofluid Group, International University of Beirut BIU, Beirut 1001, LebanonEnergy and Thermofluid Group, International University of Beirut BIU, Beirut 1001, LebanonEnergy and Thermofluid Group, International University of Beirut BIU, Beirut 1001, LebanonIn this manuscript, an innovative concept of producing power from a thermoelectric generator (TEG) is evaluated. This concept takes advantage of using the exhaust airflow of all-air heating, ventilating, and air-conditioning (HVAC) systems, and sun irradiation. For the first step, a parametric analysis of power generation from TEGs for different practical configurations is performed. Based on the results of the parametric analysis, recommendations associated with practical applications are presented. Therefore, a one-dimensional steady-state solution for the heat diffusion equation is considered with various boundary conditions (representing applied configurations). It is revealed that the most promising configuration corresponds to the TEG module exposed to a hot fluid at one face and a cold fluid at the other face. Then, based on the parametric analysis, the innovative concept is recognized and analyzed using appropriate thermal modeling. It is shown that for solar radiation of 2000 W/m<sup>2</sup> and a space cooling load of 20 kW, a 40 × 40 cm<sup>2</sup> flat plate is capable of generating 3.8 W of electrical power. Finally, an economic study shows that this system saves about $6 monthly with a 3-year payback period at 2000 W/m<sup>2</sup> solar radiation. Environmentally, the system is also capable of reducing about 1 ton of CO<sub>2 </sub>emissions yearly.https://www.mdpi.com/1099-4300/22/5/503new conceptpower generationTEGHVACsun irradiation |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Ahmad Faraj Hassan Jaber Khaled Chahine Jalal Faraj Mohamad Ramadan Hicham El Hage Mahmoud Khaled |
spellingShingle |
Ahmad Faraj Hassan Jaber Khaled Chahine Jalal Faraj Mohamad Ramadan Hicham El Hage Mahmoud Khaled New Concept of Power Generation Using TEGs: Thermal Modeling, Parametric Analysis, and Case Study Entropy new concept power generation TEG HVAC sun irradiation |
author_facet |
Ahmad Faraj Hassan Jaber Khaled Chahine Jalal Faraj Mohamad Ramadan Hicham El Hage Mahmoud Khaled |
author_sort |
Ahmad Faraj |
title |
New Concept of Power Generation Using TEGs: Thermal Modeling, Parametric Analysis, and Case Study |
title_short |
New Concept of Power Generation Using TEGs: Thermal Modeling, Parametric Analysis, and Case Study |
title_full |
New Concept of Power Generation Using TEGs: Thermal Modeling, Parametric Analysis, and Case Study |
title_fullStr |
New Concept of Power Generation Using TEGs: Thermal Modeling, Parametric Analysis, and Case Study |
title_full_unstemmed |
New Concept of Power Generation Using TEGs: Thermal Modeling, Parametric Analysis, and Case Study |
title_sort |
new concept of power generation using tegs: thermal modeling, parametric analysis, and case study |
publisher |
MDPI AG |
series |
Entropy |
issn |
1099-4300 |
publishDate |
2020-04-01 |
description |
In this manuscript, an innovative concept of producing power from a thermoelectric generator (TEG) is evaluated. This concept takes advantage of using the exhaust airflow of all-air heating, ventilating, and air-conditioning (HVAC) systems, and sun irradiation. For the first step, a parametric analysis of power generation from TEGs for different practical configurations is performed. Based on the results of the parametric analysis, recommendations associated with practical applications are presented. Therefore, a one-dimensional steady-state solution for the heat diffusion equation is considered with various boundary conditions (representing applied configurations). It is revealed that the most promising configuration corresponds to the TEG module exposed to a hot fluid at one face and a cold fluid at the other face. Then, based on the parametric analysis, the innovative concept is recognized and analyzed using appropriate thermal modeling. It is shown that for solar radiation of 2000 W/m<sup>2</sup> and a space cooling load of 20 kW, a 40 × 40 cm<sup>2</sup> flat plate is capable of generating 3.8 W of electrical power. Finally, an economic study shows that this system saves about $6 monthly with a 3-year payback period at 2000 W/m<sup>2</sup> solar radiation. Environmentally, the system is also capable of reducing about 1 ton of CO<sub>2 </sub>emissions yearly. |
topic |
new concept power generation TEG HVAC sun irradiation |
url |
https://www.mdpi.com/1099-4300/22/5/503 |
work_keys_str_mv |
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