首页> 外文期刊>Sustainable Energy Technologies and Assessments >Experimental studies on photovoltaic-thermal heat pump water heaters using variable frequency drive compressors
【24h】

Experimental studies on photovoltaic-thermal heat pump water heaters using variable frequency drive compressors

机译:使用可变频率驱动压缩机的光伏 - 热泵热水器的实验研究

获取原文
获取原文并翻译 | 示例
           

摘要

The present work attempts to devise an efficient method utilizing an on-grid photovoltaic-thermal heat pump water heater (PV-THPWH) integrated with a real-time variable frequency controller to achieve the goal of energy-efficient buildings. The prime focus is to reduce the grid's dependence on the compressor's energy-intensive operation by employing a feedback-controlled variable frequency drive (VFD). Additionally, the possibilities involved with addressing the electrical and thermal energy requirements of an energy-efficient building was investigated utilizing the proposed system. R-32 refrigerant in the photovoltaic-thermal (PV-T) evaporator coils of the heat pump assembly help to cool the photovoltaic (PV) panel while delivering the absorbed heat in the condenser to heat water contained inside the storage tank. Outdoor experiments and theoretical investigations of the combined system were carried out to appraise the dynamic behavior under varying solar irradiation and ambient temperature conditions. The observations conveyed that the PV-THPWH system succeeded in reducing the PV panel operating temperature by 25%, which resulted in a 20% increment in PV power output. Also, the performance indicators, such as the instantaneous energy efficiency and instantaneous PV efficiency, were found to increase by 15% and 34%, respectively, resulting in an average coefficient of performance of 6.4. For a clear sky day, the recorded total PV energy output was 4.67 units, while the VFD compressor consumption was 3.42 units, and the surplus 1.25 units were sent to the grid. Furthermore, the economic analysis reported a payback period of 2.3 years for the developed PV-THPWH system.
机译:目前的工作试图利用集成的网格光伏 - 热泵热水器(PV-THWH)与实时可变频率控制器集成的高效方法设计,以实现节能建筑的目标。主要重点是通过采用反馈控制的可变频率驱动(VFD)来减少电网对压缩机的能量密集型操作的依赖。此外,利用所提出的系统研究了解决节能建筑的电气和热能要求的可能性。 R-32在光伏 - 热(PV-T)蒸发器线圈中的R-32制冷剂的热泵组件有助于冷却光伏(PV)面板,同时将冷凝器中的吸收热量输送到储罐内部的热水。进行了户外实验和组合系统的理论研究,以评估不同太阳照射和环境温度条件下的动态行为。观察结果表明,PV-THPH系统成功将PV面板的工作温度降低25%,导致光伏电源的增量20%。此外,发现诸如瞬时能量效率和瞬时光伏效率的性能指标分别增加15%和34%,导致平均性能系数为6.4。对于清晰的天空日,录制的总光伏能量输出为4.67单位,而VFD压缩机消耗量为3.42个单位,剩余1.25个单位被发送到电网。此外,经济学分析报告了发达的PV-THPH系统的投资回收期为2.3岁。

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