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- W4313307276 abstract "This work presents an efficient, clean, and cutting-edge building cooling, heating, and power system driven by high-temperature trough collectors and a reseidential wind turbine. The proposed smart system comprises a vanadium chloride hydrogen cycle and electrolyzer unit using the collectors' absorbed heat and turbine's generated wind to produce hydrogen to run alkaline fuel cells. In addition to electricity production, the waste heat of fuel cells is exploited through absorption chiller and heat exchangers for cooling and heating generations. Besides, several controllers are implemented to establish a smart interaction between the system and local energy grids. Transient simulation is performed via TRNSYS-MATLAB developed code for Lund city in southwest Sweden. Moreover, the effect of significant parameters on main performance indicators is studied via parametric study. According to the results, by increasing the solar radiation from summer to winter, solar collectors' contribution to producing the hydrogen is reduced, which signifies the role of wind energy as a secondary source to compensate for the building's demand. The results further reveal that not only the entire building demand is supplied with renewable resources for most of the year but also a considerable energy value is sold to the local energy network, indicating the effectiveness of the suggested system. According to the parametric investigation, while the increase in fuel cell current density has a major positive effect on the performance indicators, the electrode area is recommended to be kept at the lowest bound." @default.
- W4313307276 created "2023-01-06" @default.
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- W4313307276 date "2022-11-16" @default.
- W4313307276 modified "2023-10-02" @default.
- W4313307276 title "An intelligent solar-driven multi-generation energy production/storage system" @default.
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- W4313307276 doi "https://doi.org/10.1109/iceccme55909.2022.9987740" @default.
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