Energy and thermal modeling of building façade integrated photovoltaics

Author:

Ordoumpozanis Konstantinos1,Theodosiou Theodoros2,Bouris Dimitrios3,Tsikaloudaki Katerina2

Affiliation:

1. University of Western Macedonia, Department of Mechanical Engineering, Kozani, Greece

2. Aristotle University of Thessaloniki, Laboratory of Building Construction and Building Physics, Thessaloniki, Greece

3. National Technical University of Athens, School of Mechanical Engineering, Laboratory of Aerodynamics, Athens, Greece

Abstract

Electricity generation on site is a design challenge aiming at supporting the concept of energy-autonomous building. Many projects worldwide have promoted the installation of photovoltaic panels on urban buildings, aiming at utilizing a large area to produce electricity. In most cases, photovoltaics are considered strictly as electricity generators, neglecting their effect to the efficiency and to the thermal behaviour of the building envelope. The integrated performance of photovoltaic ventilated fa?ades, where the photovoltaics are regarded as part of a complicated envelope system, provides design challenges and problems that cannot be overlooked within the framework of the Nearly Zero Energy Building concept. In this study, a finite volume model for photovoltaic ventilated fa?ades is developed, experimentally validated and found to have a significant convergence to measured data.

Publisher

National Library of Serbia

Subject

Renewable Energy, Sustainability and the Environment

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