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Photovoltaics in urban environment: A case study for typical apartment buildings in Greece

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  • Loulas, Nikolaos M.
  • Karteris, Marinos M.
  • Pilavachi, Petros A.
  • Papadopoulos, Agis M.

Abstract

This paper aims at estimating the potential of PV systems applied on buildings (BAPVs) within a typical Greek building block. For the purpose of the study a block located in the municipality of Thessaloniki in northern Greece was chosen. The block consists of multistory residential buildings of various heights and represents the typical Greek building block. A detailed shading study of photovoltaic (PV) systems in the residential building block was carried out and is presented in the paper. The shading study was carried out using the Google Sketchup and PVsyst software tools, leading to significant conclusions firstly about shading losses of PVs in multistory building topologies and secondly about the actual available areas for PVs in a typical urban building block. Finally, an economic assessment of the PV systems examined was carried out, focusing on their feasibility and based on the feed-in tariff terms which have been enacted exclusively for residential PV installations since 2009. It was found that the majority of installations have a maximum six-year payback period.

Suggested Citation

  • Loulas, Nikolaos M. & Karteris, Marinos M. & Pilavachi, Petros A. & Papadopoulos, Agis M., 2012. "Photovoltaics in urban environment: A case study for typical apartment buildings in Greece," Renewable Energy, Elsevier, vol. 48(C), pages 453-463.
  • Handle: RePEc:eee:renene:v:48:y:2012:i:c:p:453-463
    DOI: 10.1016/j.renene.2012.06.009
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    References listed on IDEAS

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    1. Alonso-García, M.C. & Ruiz, J.M. & Herrmann, W., 2006. "Computer simulation of shading effects in photovoltaic arrays," Renewable Energy, Elsevier, vol. 31(12), pages 1986-1993.
    2. Hofierka, Jaroslav & Kaňuk, Ján, 2009. "Assessment of photovoltaic potential in urban areas using open-source solar radiation tools," Renewable Energy, Elsevier, vol. 34(10), pages 2206-2214.
    3. Ordóñez, J. & Jadraque, E. & Alegre, J. & Martínez, G., 2010. "Analysis of the photovoltaic solar energy capacity of residential rooftops in Andalusia (Spain)," Renewable and Sustainable Energy Reviews, Elsevier, vol. 14(7), pages 2122-2130, September.
    4. Arboit, M. & Mesa, A. & Diblasi, A. & Fernández Llano, J.C. & de Rosa, C., 2010. "Assessing the solar potential of low-density urban environments in Andean cities with desert climates: The case of the city of Mendoza, in Argentina. 2nd. Part," Renewable Energy, Elsevier, vol. 35(7), pages 1551-1558.
    5. Arboit, M. & Diblasi, A. & Fernández Llano, J.C. & de Rosa, C., 2008. "Assessing the solar potential of low-density urban environments in Andean cities with desert climates: The case of the city of Mendoza, in Argentina," Renewable Energy, Elsevier, vol. 33(8), pages 1733-1748.
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