...
首页> 外文期刊>Energies >Demonstration of the Performance of an Air-Type Photovoltaic Thermal (PVT) System Coupled with a Heat-Recovery Ventilator
【24h】

Demonstration of the Performance of an Air-Type Photovoltaic Thermal (PVT) System Coupled with a Heat-Recovery Ventilator

机译:空气热式光伏热(PVT)系统与热回收通风机耦合的性能演示

获取原文
           

摘要

A heat-recovery ventilator (HRV) effectively conducts ventilation by recovering waste heat from indoors to outdoors during heating periods. However, dew condensation associated with the HRV system may arise due to the difference between the indoor temperature and the very low outdoor temperature in winter, and this can decrease the heat exchange efficiency. These problems can be solved by the pre-heating of the incoming air, but additional energy is required when pursuing such a strategy. On the other hand, an air-type photovoltaic thermal (PVT) system produces electricity and thermal energy simultaneously using air as the heat transfer medium. Moreover, the heated air from the air-type PVT system can be connected to the HRV to pre-heat the supply air instead of taking in the cold outdoor air. Thus, the ventilation efficiency can be improved and the problems arising during the heating period can be resolved. Consequentially, the heating energy required in a building can be reduced, with additional electricity acquired as well. In this paper, the performance of an air-type PVT system coupled with an HRV is assessed. To do this, air-type PVT collectors operating at 1 kW p were installed in an experimental house and coupled to an HRV system. Thermal performance and heating energy required during the winter season were analyzed experimentally. Furthermore, the electrical performances of the air-type PVT system with and without ventilation at the back side of the PV during the summer season were analyzed.
机译:热回收通风机(HRV)通过在供暖期间从室内到室外回收废热来有效地进行通风。但是,由于冬季室内温度和室外温度非常低之间的差异,可能会导致与HRV系统相关的结露,这会降低热交换效率。这些问题可以通过预热进入的空气来解决,但是在采取这种策略时需要额外的能量。另一方面,空气型光伏热(PVT)系统使用空气作为传热介质同时产生电能和热能。此外,来自空气式PVT系统的热空气可以连接到HRV,以预热供应空气,而不用吸入冷的室外空气。因此,可以提高通风效率并且可以解决在加热期间出现的问题。因此,可以减少建筑物所需的热能,同时还可获取额外的电能。在本文中,评估了带有HRV的气动PVT系统的性能。为此,将一台工作功率为1 kW p的空气型PVT收集器安装在实验室内,并与HRV系统耦合。实验分析了冬季所需的热性能和热能。此外,还分析了夏季时光伏背板有无通风的空气型PVT系统的电气性能。

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