首页> 外文期刊>Solar Energy >Performance investigation on a novel spectral splitting concentrating photovoltaic/thermal system based on direct absorption collection
【24h】

Performance investigation on a novel spectral splitting concentrating photovoltaic/thermal system based on direct absorption collection

机译:基于直接吸收收集的新型分光聚光光伏/热力系统性能研究

获取原文
获取原文并翻译 | 示例
       

摘要

The photovoltaic unit and the thermal unit are coupled in a concentrating photovoltaic/thermal (CPV/T) system and solar cells always operate at high temperature in order to obtain high quality thermal energy, which results in the overheating problem of solar cells. In the present study, a novel spectral splitting concentrating photovoltaic/thermal (SS-CPV/T) prototype based on direct absorption collection had been set up. The concentrator in the system is a truncated CPC by eliminating multiple reflections of solar radiation (called EMR), which was designed by our group. Water is used as both spectral splitting medium and heat transfer fluid in the spectral splitting subsystem. Distribution of the incidence angle of the irradiance illuminating on the filter at the outlet aperture of EMR was considered. The radiation transfer model was established to obtain the optical performance of the filter. And the electrical-thermal coupled model was proposed to predict the electrical and thermal performances of the SS-CPV/T system. When the total solar irradiance was about 1000 W/m(2) and the diffuse irradiance ratios were 15.0%, 17.8% and 24.0% respectively, the experimental electrical efficiencies of the SSCPV/T system were 9.6%, 9.4% and 9.0% respectively and the thermal efficiencies were 52.0%, 50.7% and 48.5% respectively. The theoretical electrical efficiencies were 10.4%, 10.2% and 9.8% respectively and the theoretical thermal efficiencies were 52.8%, 51.5% and 49.4% respectively. Comparison experiments on the electrical and thermal performances of the CPV/T systems with and without spectral splitting were also conducted. Under the condition of the same outlet fluid temperature the maximum temperature of solar cells in the SS-CPV/T system was about 5.6 degrees C lower than the temperature of outlet fluid and about 12 degrees C lower than the maximum temperature of solar cells in the CPV/T system without spectral splitting. Finally, the theoretical model was expanded to higher concentration ratios to study the effects of the concentration ratio on the electrical and thermal performances of the CPV/T systems with and without spectral splitting. The results illustrate that compared to the CPV/T system without spectral splitting, the SS-CPV/T system has higher electrical efficiency when the concentration ratio is larger than 10 and higher exergy efficiency when the concentration ratio is larger than 14 for the outlet fluid temperature of 50 degrees C. And for 70 degrees C outlet fluid temperature, these two concentration ratios shift to 9 and 15 respectively. Thus, spectral splitting technology is more advantageous in the CPV/T systems with moderate and high outlet fluid temperature and concentration ratios.
机译:光伏单元和热单元在聚光光伏/热(CPV / T)系统中耦合,并且太阳能电池总是在高温下运行以获得高质量的热能,这导致了太阳能电池的过热问题。在本研究中,建立了一个基于直接吸收收集的新型光谱分离聚光光伏/热(SS-CPV / T)原型。该系统中的集中器通过消除由我们小组设计的太阳辐射的多次反射(称为EMR),是一个截断的CPC。在光谱分离子系统中,水既用作光谱分离介质,又用作传热流体。考虑了照射在EMR出口孔处的滤光片上的辐照度的入射角的分布。建立辐射传递模型以获得滤光片的光学性能。提出了电热耦合模型来预测SS-CPV / T系统的电热性能。当总太阳辐照度约为1000 W / m(2)且散射辐照比分别为15.0%,17.8%和24.0%时,SSCPV / T系统的实验电效率分别为9.6%,9.4%和9.0%热效率分别为52.0%,50.7%和48.5%。理论电效率分别为10.4%,10.2%和9.8%,理论热效率分别为52.8%,51.5%和49.4%。还进行了具有和不具有光谱分裂的CPV / T系统的电气和热性能的对比实验。在相同出口流体温度的条件下,SS-CPV / T系统中太阳能电池的最高温度比出口流体温度低约5.6摄氏度,比太阳能电池最高温度低约12摄氏度。没有光谱分裂的CPV / T系统。最后,将理论模型扩展到更高的浓度比,以研究浓度比对具有和不具有光谱分裂的CPV / T系统的电和热性能的影响。结果表明,与没有光谱分裂的CPV / T系统相比,SS-CPV / T系统在出口比大于10时具有更高的电效率,在出口比大于14时具有更高的火用效率。温度为50摄氏度。对于70摄氏度的出口流体温度,这两个浓度比分别变为9和15。因此,在具有中等和较高出口流体温度和浓度比的CPV / T系统中,光谱分离技术更具优势。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号