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Control Strategies for solar fa?ade panels coupled with a Heat Pump and interacting with a District Heating Network

机译:带有热泵并与区域供热网络交互作用的太阳能面板的控制策略

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This work aims to understand the potential of an innovative technology for solar energy harvesting in a District Heating Network (DHN). The considered technology is aesthetic solar fa?ade thermal panel. In order to guarantee the temperatures required by a 3rd generation DHN (around 75°C), a Heat Pump, using as cold source the heat from the panels, is necessary. It is worth noting that the coupling between fa?ade panels and Heat Pump requires accurate evaluations. The optimum condition for the fa?ade panels is to work at low temperatures (close to ambient or even below), while the Heat Pump reaches high Coefficient Of Performance (COP) when the temperature difference between hot and cold sources is minimized. In the first part of the study, a system model has been built using Matlab SIMULINK using results of tests on the panels already performed inside the H2020 ENVISION project. Different colours are considered. In the second part, a predictive mode-based strategy has been defined and tuned on the system in order to guarantee the best system performances in interaction with the DHN. This work will allow to understand whether this technology is feasible in the presented scenario and this layout can improve local energy exchange.
机译:这项工作旨在了解在区域供热网络(DHN)中收集太阳能的创新技术的潜力。所考虑的技术是美观的太阳能立面隔热板。为了保证第三代DHN所需的温度(约75°C),有必要使用热泵,将面板的热量用作冷源。值得注意的是,立面面板和热泵之间的耦合需要精确评估。外墙面板的最佳条件是在低温(接近环境甚至更低的温度)下工作,而当热源和冷源之间的温差最小时,热泵将达到较高的性能系数(COP)。在研究的第一部分中,已使用Matlab SIMULINK建立了系统模型,并使用了H2020 ENVISION项目内部已进行的面板测试结果。考虑不同的颜色。在第二部分中,已经定义了基于预测模式的策略,并在系统上进行了调整,以保证与DHN交互时的最佳系统性能。这项工作将使您了解该技术在提出的方案中是否可行,并且此布局可以改善局部能量交换。

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