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Computer Fluid Dynamics Assessment of an Active Ventilated Façade Integrating Distributed MPPT and Battery

Conference Paper
Publication Date:
2019
abstract:
Ventilated Façades integrated with photovoltaic panels have become a popular way to improve both the thermal-physical performances of the existing built environment. The increased usage of not-programmable renewable energy sources implies the adoption of energy storage systems to mitigate the mismatch between the power generation and the building's demand. Aiming at properly integrates a photovoltaic panel and a battery (Lithium based) as a module of an active ventilated façade, the prototype design has been carried out in terms of thermo-fluid dynamics performance. Based on experimental setup, a numerical study of flow through the air cavity of the active ventilated façade has been carried out by the fluid-dynamics Finite Volume code-Ansys-Fluent. The calibrated model was lastly used to perform a wide range of parametric analyses on different climate and boundary conditions to explore the viability of the prototype.
Iris type:
04.01 Contributo in Atti di convegno
Keywords:
BIPV; battery; ventilated façade; CFD
List of contributors:
Tumminia, Giovanni; AIRO' FARULLA, Girolama; Antonucci, Vincenzo; Ferraro, Marco; Sergi, Francesco; Brunaccini, Giovanni; Aloisio, Davide
Authors of the University:
BRUNACCINI GIOVANNI
FERRARO MARCO
SERGI FRANCESCO
Handle:
https://iris.cnr.it/handle/20.500.14243/446266
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