Operational performance of a novel heat pump coupled with mini-channel PV/T and thermal panel in low solar radiation
Here we describe a heat pump system coupled with novel PV/T and thermal panels for space heating in low solar radiation conditions. Existing solar indirect-expansion systems connect the solar panels and evaporator of the heat pump in parallel with the heat storage tank. For our system these three co...
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doaj-e2eaed67da964ee6963d44a49f03654f2021-04-02T13:10:43ZengKeAi Communications Co., Ltd.Energy and Built Environment2666-12332020-01-01115059Operational performance of a novel heat pump coupled with mini-channel PV/T and thermal panel in low solar radiationJinzhi Zhou0Xudong Zhao1Yanping Yuan2Jing Li3Min Yu4Yi Fan5School of Mechanical Engineering, Southwest Jiaotong University, Chengdu, Sichuan, PR China; School of Engineering and Computer Science, University of Hull, Hull, HU6 7RX, UKSchool of Engineering and Computer Science, University of Hull, Hull, HU6 7RX, UK; Corresponding author.School of Mechanical Engineering, Southwest Jiaotong University, Chengdu, Sichuan, PR ChinaSchool of Engineering and Computer Science, University of Hull, Hull, HU6 7RX, UKSchool of Mechanical Engineering, Southwest Jiaotong University, Chengdu, Sichuan, PR ChinaSchool of Engineering and Computer Science, University of Hull, Hull, HU6 7RX, UKHere we describe a heat pump system coupled with novel PV/T and thermal panels for space heating in low solar radiation conditions. Existing solar indirect-expansion systems connect the solar panels and evaporator of the heat pump in parallel with the heat storage tank. For our system these three components are instead connected in series, which can stabilize the temperature at the inlet of the evaporator and decrease the inlet temperature of the solar panels, leading to improved energy efficiency and the production of much more thermal energy. The experimental results of this system show that the average electrical, thermal and overall efficiency of the PV/T panels are 15.9%, 33.4% and 49.3%, respectively. The average thermal efficiency of the thermal panels is 60.4%, the COP of heat pump is 4.7 and the room temperature is constantly over 18 °C. Based on the experimental results, some improvements are analyzed. We conclude that this operating model can meet the requirement of space heating in low solar radiation environments.http://www.sciencedirect.com/science/article/pii/S2666123319300017PV/TThermal panelHeat pumpLow solar radiationSpace heating |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Jinzhi Zhou Xudong Zhao Yanping Yuan Jing Li Min Yu Yi Fan |
spellingShingle |
Jinzhi Zhou Xudong Zhao Yanping Yuan Jing Li Min Yu Yi Fan Operational performance of a novel heat pump coupled with mini-channel PV/T and thermal panel in low solar radiation Energy and Built Environment PV/T Thermal panel Heat pump Low solar radiation Space heating |
author_facet |
Jinzhi Zhou Xudong Zhao Yanping Yuan Jing Li Min Yu Yi Fan |
author_sort |
Jinzhi Zhou |
title |
Operational performance of a novel heat pump coupled with mini-channel PV/T and thermal panel in low solar radiation |
title_short |
Operational performance of a novel heat pump coupled with mini-channel PV/T and thermal panel in low solar radiation |
title_full |
Operational performance of a novel heat pump coupled with mini-channel PV/T and thermal panel in low solar radiation |
title_fullStr |
Operational performance of a novel heat pump coupled with mini-channel PV/T and thermal panel in low solar radiation |
title_full_unstemmed |
Operational performance of a novel heat pump coupled with mini-channel PV/T and thermal panel in low solar radiation |
title_sort |
operational performance of a novel heat pump coupled with mini-channel pv/t and thermal panel in low solar radiation |
publisher |
KeAi Communications Co., Ltd. |
series |
Energy and Built Environment |
issn |
2666-1233 |
publishDate |
2020-01-01 |
description |
Here we describe a heat pump system coupled with novel PV/T and thermal panels for space heating in low solar radiation conditions. Existing solar indirect-expansion systems connect the solar panels and evaporator of the heat pump in parallel with the heat storage tank. For our system these three components are instead connected in series, which can stabilize the temperature at the inlet of the evaporator and decrease the inlet temperature of the solar panels, leading to improved energy efficiency and the production of much more thermal energy. The experimental results of this system show that the average electrical, thermal and overall efficiency of the PV/T panels are 15.9%, 33.4% and 49.3%, respectively. The average thermal efficiency of the thermal panels is 60.4%, the COP of heat pump is 4.7 and the room temperature is constantly over 18 °C. Based on the experimental results, some improvements are analyzed. We conclude that this operating model can meet the requirement of space heating in low solar radiation environments. |
topic |
PV/T Thermal panel Heat pump Low solar radiation Space heating |
url |
http://www.sciencedirect.com/science/article/pii/S2666123319300017 |
work_keys_str_mv |
AT jinzhizhou operationalperformanceofanovelheatpumpcoupledwithminichannelpvtandthermalpanelinlowsolarradiation AT xudongzhao operationalperformanceofanovelheatpumpcoupledwithminichannelpvtandthermalpanelinlowsolarradiation AT yanpingyuan operationalperformanceofanovelheatpumpcoupledwithminichannelpvtandthermalpanelinlowsolarradiation AT jingli operationalperformanceofanovelheatpumpcoupledwithminichannelpvtandthermalpanelinlowsolarradiation AT minyu operationalperformanceofanovelheatpumpcoupledwithminichannelpvtandthermalpanelinlowsolarradiation AT yifan operationalperformanceofanovelheatpumpcoupledwithminichannelpvtandthermalpanelinlowsolarradiation |
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