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光伏发电技术 ★ 5.0

用于全天持续发电的自动切换SH TEG/PCM装置实验研究

Experimental investigation of an Auto-Switching SH TEG/PCM unit for consistent All-Day electric power generation

语言:

中文摘要

摘要 在追求可持续能源解决方案的过程中,将热电发电机(TEG)与由太阳能驱动的相变材料(PCM)相结合,在实现持续发电(EG)方面展现出良好前景。尽管针对太阳能加热TEG/PCM系统已有大量研究,但直接利用太阳光的研究仍十分缺乏,现有研究通常采用加热器作为替代热源,从而忽略了太阳辐射光谱和强度的影响。本研究在模拟太阳辐照条件下,考察了一种自动切换式SH TEG/PCM装置的性能,并提出了用于系统分析的实验装置与理论模型。结果表明,24小时内总发电量主要取决于光照运行阶段(LOP)的发电量。当铝盒(AB)内的PCM完全熔化后,在向静态阶段(TSP)过渡期间,顶盖底部附近会出现二次温度上升现象。在总太阳辐照量为4 kW·h/m²的条件下,80-AB单元实现了最高的总发电量,其LOP和TSP阶段的发电量分别为3.72 W·h/m²和0.15 W·h/m²;当暴露于8个太阳强度(SSs)下持续5小时时,其LOP和TSP阶段的发电量分别达到峰值4.4 W·h/m²和0.19 W·h/m²。此外,80-AB单元在接近10小时照射后发电量达到最大值;其中,带有隔热薄膜的封装单元总发电量为8.78 W·h/m²,分别比无保护裸露单元和仅隔热但无薄膜的单元高出1.06 W·h/m²和1.54 W·h/m²。在LOP阶段,实验用80-AB单元在裸露模式下相比对照单元最大可实现7.71 W·h/m²的发电量提升。80-AB单元的开路电压可达约110 mV,当负载电阻为5 Ω时,最大输出功率达到0.34 W/m²。所提出的装置为实现全天连续发电提供了切实可行的解决方案,保障了可靠的能源供应,预示着一种环境可持续的能源范式。

English Abstract

Abstract In the pursuit of sustainable energy solutions, combining a thermoelectric generator (TEG) with a phase change material (PCM) powered by solar energy shows promise for consistent electricity generation (EG). Despite extensive research on solar-heating TEG/PCM systems, there is a lack of studies directly utilizing sunlight, with heaters commonly used as substitutes, thus overlooking the influence of solar radiation spectrum and intensity. This study examines auto-switching SH TEG/PCM unit performance under simulated solar irradiation, presenting an experimental setup and theoretical model for system analysis. Results show that the total EG over 24 h relies on the EG during the lighted operation phase (LOP). Once the PCM in the aluminum box (AB) fully melts, a secondary temperature rise near the bottom of the top cover occurs during the transition to static phase (TSP). Unit 80-AB achieves the highest total EG under a total solar irradiance of 4 kW⋅h/m 2 , with values of 3.72 and 0.15 W⋅h/m 2 for the LOP and TSP, and when exposed to 8 SSs for 5 h, it peaks at 4.4 and 0.19 W⋅h/m 2 for the LOP and TSP, respectively. Additionally, the EG for unit 80-AB is maximal after almost 10-hour exposure, with the insulated unit featuring a film achieving a total EG of 8.78 W⋅h/m 2 , exceeding the bare unit and insulated unit by 1.06 and 1.54 W⋅h/m 2 , respectively. During the LOP, the experimental unit 80-AB can achieve a maximum increase in EG of 7.71 W⋅h/m 2 in the bare mode compared to the control unit . The open-circuit voltage of unit 80-AB reaches approximately 110 mV, with the maximum output power amounting to 0.34 W/m 2 when the load resistance is 5 Ω. The proposed units present a practical solution for continuous EG throughout the day, guaranteeing a reliable energy provision and heralding an environmentally sustainable energy paradigm.
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SunView 深度解读

该TEG/PCM全天候发电技术为阳光电源储能系统提供创新思路。研究中的相变材料储热与温差发电结合,可启发ST系列PCS在光储一体化场景的热管理优化。24小时持续发电特性与PowerTitan储能系统的全天候运行需求契合,温差发电原理可应用于逆变器散热余热回收,提升SG系列光伏逆变器系统效率。该技术验证了太阳能多维度利用的可行性,为iSolarCloud平台的智慧能源管理增添新维度,推动光储热一体化解决方案发展。