Development of a Control Strategy for a PVT-based CO2 Heat Pump

Johannes Rullof, K. Lambers, U. Blieske, J. Hadji-Minaglou, F. Scholzen
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Abstract

In recent years, the possibility of combining photovoltaics (PV) and solar thermal collectors into one solar hybrid module (PVT-module) has been increasingly investigated. PVT-modules produce thermal and electrical energy at the same time. Since the efficiency of a photovoltaic module decreases with increasing temperature, the temperature of the heat transfer media is often limited to about 30°C and the PVT-module is combined with a heat pump, which increases the temperature on the “warm side”. A common approach is to integrate the PVT-module directly as an evaporator in a heat pump system (PVT-direct).This paper presents the development of a control strategy for a PVT-based CO2 heat pump that takes into account solar radiation, ambient temperature, wind speed, evaporator temperature and compressor power. The developed control strategy provides different operating modes depending on the solar radiation supply as well as the ambient temperature.
基于pvt的CO2热泵控制策略的研究
近年来,将光伏(PV)和太阳能集热器组合成一个太阳能混合组件(PV -module)的可能性得到了越来越多的研究。pvt模块同时产生热能和电能。由于光伏组件的效率随着温度的升高而降低,因此传热介质的温度通常限制在30℃左右,并且pv -组件与热泵相结合,这增加了“暖侧”的温度。一种常见的方法是将pvt模块直接集成为热泵系统中的蒸发器(PVT-direct)。本文提出了一种考虑太阳辐射、环境温度、风速、蒸发器温度和压缩机功率的pvt型CO2热泵控制策略。所开发的控制策略根据太阳辐射供应和环境温度提供不同的操作模式。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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