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The Role of Occupants in Buildings’ Energy Performance Gap: Myth or Reality?

Ardeshir Mahdavi, Christiane Berger, Hadeer Amin, Eleni Ampatzi, Rune Korsholm Andersen, Elie Azar, Verena Marie Barthelmes, Matteo Favero, Jakob Hahn, Dolaana Khovalyg, Henrik Nellemose Knudsen, Alessandra Luna-Navarro, Astrid Roetzel, Fisayo Caleb Sangogboye, Marcel Schweiker, Mahnameh Taheri, Despoina Teli, Marianne F. Touchie, Silke Verbruggen

2021Sustainability126 citationsDOIOpen Access PDF

Abstract

Buildings’ expected (projected, simulated) energy use frequently does not match actual observations. This is commonly referred to as the energy performance gap. As such, many factors can contribute to the disagreement between expectations and observations. These include, for instance, uncertainty about buildings’ geometry, construction, systems, and weather conditions. However, the role of occupants in the energy performance gap has recently attracted much attention. It has even been suggested that occupants are the main cause of the energy performance gap. This, in turn, has led to suggestions that better models of occupant behavior can reduce the energy performance gap. The present effort aims at the review and evaluation of the evidence for such claims. To this end, a systematic literature search was conducted and relevant publications were identified and reviewed in detail. The review entailed the categorization of the studies according to the scope and strength of the evidence for occupants’ role in the energy performance gap. Moreover, deployed calculation and monitoring methods, normalization procedures, and reported causes and magnitudes of the energy performance gap were documented and evaluated. The results suggest that the role of occupants as significant or exclusive contributors to the energy performance gap is not sufficiently substantiated by evidence.

Topics & Concepts

Energy performanceEnergy (signal processing)Normalization (sociology)CategorizationArchitectural engineeringScope (computer science)Computer scienceEfficient energy useRisk analysis (engineering)EngineeringBusinessArtificial intelligenceMathematicsSociologyAnthropologyStatisticsProgramming languageElectrical engineeringBuilding Energy and Comfort OptimizationNoise Effects and ManagementSustainable Building Design and Assessment
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