This paper presents a holistic approach to assess the energy performance of a naturally ventilated PV façade system. A rigorous combined experimental and numerical approach is established. The real energy performance of the system has been evaluated through a long-term high resolution monitoring of a typical ventilated PV façade system. A numerical model based on TRaNsient SYstem Simulation (TRNSYS) package was developed to assess the thermal and energy performance of the system, which has been verified by a series of statistical analysis using the data collected from the experiment. The validated model was then used to assess the energy and thermal performance of a 7.4 kWp prototype ventilated PV façadeudsystem in Izmir, Turkey. The results of this study demonstrated that ventilation in the air cavity of the PVudfaçade system could significantly improve energy performance of the system even in a southeast facingudfaçades. The quantitative analysis provides useful guidance to the system designers for the improvementudof energy efficiency of the PV facade system.
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