Chang Ho, Yu Zhi-Rong
Department of Mechanical Engineering, National Taipei University of Technology, Taipei 10608, Taiwan.
J Nanosci Nanotechnol. 2012 Aug;12(8):6811-6. doi: 10.1166/jnn.2012.4551.
This study self-develops a novel type of photothermoelectric power generation modules. Dye-sensitized solar cells (DSSCs) serve as the photoelectric conversion system and a copper (Cu) heat-transfer nanofilm coating on both sides of the thermoelectric generator (TEG) acts as a thermoelectric conversion system. Thus module assembly absorbs light and generates electricity by DSSCs, and also recycles waste heat and generates power by the TEG. In addition, a set of pulsating heat pipes (PHP) filled with Cu nanofluid is placed on the cooling side to increase cooling effects and enhance the power generation efficiency. Results show that when the heat source of thermoelectric modules reaches 90 degrees C, TEG power output is increased by 85.7%. Besides, after thermoelectric modules are heated by additional heat source at 80 degrees C, the electrical energy generated by them can let a NiMH cell (1.25 V) be sufficiently charged in about 30 minutes. When photothermoelectric modules is illumined by simulated light, the temperature difference of two sides of TEG can reach 7 degrees C and the thermoelectric conversion efficiency is 2.17%. Furthermore, the power output of the thermoelectric modules is 11.48 mW/cm2, enhancing 1.4 % compared to merely using DSSCs module.
本研究自行开发了一种新型的光热发电模块。染料敏化太阳能电池(DSSC)用作光电转换系统,热电发电机(TEG)两侧的铜(Cu)传热纳米薄膜涂层用作热电转换系统。这样,模块组件通过DSSC吸收光并发电,还通过TEG回收废热并发电。此外,在冷却侧放置一组填充有铜纳米流体的脉动热管(PHP),以提高冷却效果并提高发电效率。结果表明,当热电模块的热源达到90摄氏度时,TEG的功率输出增加了85.7%。此外,在热电模块由80摄氏度的附加热源加热后,它们产生的电能可以使镍氢电池(1.25V)在大约30分钟内充满电。当光热发电模块受到模拟光照射时,TEG两侧的温差可达7摄氏度,热电转换效率为2.17%。此外,热电模块的功率输出为11.48mW/cm2,与仅使用DSSC模块相比提高了1.4%。