A Comparative Study on Discrepancies in Residential Building Energy Performance Certification in a Mediterranean Context

Author:

Vardopoulos Ioannis12ORCID,Santamouris Mattheos3ORCID,Zorpas Antonis A.2ORCID,Barone Giovanni4ORCID,Italos Christos5,Vassiliades Constantinos5ORCID

Affiliation:

1. School of Environment, Geography and Applied Economics, Harokopio University of Athens (HUA), 17676 Kallithea, Greece

2. Laboratory of Chemical Engineering and Engineering Sustainability, Open University of Cyprus (OUC), Latsia, 2220 Nicosia, Cyprus

3. Faculty of Built Environment, University of New South Wales (UNSW), Sydney, NSW 2052, Australia

4. Department of Industrial Engineering, University of Naples Federico II, 80125 Naples, Italy

5. Department of Architecture, Land, Environmental Sciences, Neapolis University Pafos (NUP), 8042 Pafos, Cyprus

Abstract

Energy Performance Certification (EPC) systems are pivotal in addressing the global energy challenge, particularly in the building sector. This study evaluates the efficacy of the EPC offered by the Simplified Building Energy Model interface designed to indicate compliance with the Cypriot building regulations, widely known as iSBEM-Cy Version 3.4a, by examining a typical residential unit in Cyprus. Data on construction features and electromechanical systems were collected, and actual monthly electricity and oil bills were analyzed to determine the total primary energy consumption. Various factors were considered, including energy efficiency and operational parameters for heating, cooling, lighting, auxiliary systems, and domestic hot water. The building energy performance was simulated using iSBEM-Cy, allowing for comparison with real-world energy consumption. Notable discrepancies were observed, particularly in cooling, with deviations reaching 377.4%. Conversely, domestic hot water consumption exhibited minimal variance at 7%, while heating and lighting showed moderate discrepancies (24.3% and −113.9%, respectively). This study underscores the need for rigorous evaluations to shape effective EPC and provides insights into building energy performance in Mediterranean Cyprus. This research contributes to the broader discourse on sustainable construction practices by aligning simulation results with real-world energy consumption.

Publisher

MDPI AG

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