Faraj Ahmad, Jaber Hassan, Chahine Khaled, Faraj Jalal, Ramadan Mohamad, El Hage Hicham, Khaled Mahmoud
Energy and Thermofluid Group, Lebanese International University (LIU), Bekaa 1801, Lebanon.
Energy and Thermofluid Group, International University of Beirut BIU, Beirut 1001, Lebanon.
Entropy (Basel). 2020 Apr 27;22(5):503. doi: 10.3390/e22050503.
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 and a space cooling load of 20 kW, a 40 × 40 cm 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 solar radiation. Environmentally, the system is also capable of reducing about 1 ton of CO emissions yearly.
在本论文中,对一种利用热电发电机(TEG)发电的创新概念进行了评估。该概念利用了全空气供暖、通风和空调(HVAC)系统的排气气流以及太阳辐射。第一步,针对不同实际配置的TEG发电进行了参数分析。基于参数分析结果,给出了与实际应用相关的建议。因此,考虑了具有各种边界条件(代表应用配置)的热扩散方程的一维稳态解。结果表明,最有前景的配置是TEG模块一面暴露于热流体,另一面暴露于冷流体。然后,基于参数分析,使用适当的热模型对创新概念进行了识别和分析。结果表明,对于2000 W/m的太阳辐射和20 kW的空间冷却负荷,一块40×40 cm的平板能够产生3.8 W的电能。最后,一项经济研究表明,在2000 W/m的太阳辐射下,该系统每月可节省约6美元,投资回收期为3年。在环境方面,该系统每年还能够减少约1吨的二氧化碳排放。