BIM-based environmental assessment of residential renovation projects during the operational phase

Ghanbari, M; Rusch, R and Skitmore, M (2024) BIM-based environmental assessment of residential renovation projects during the operational phase. Architectural Engineering and Design Management, 20(3), pp. 624-635. ISSN 1745-2007

Abstract

Reducing energy consumption and greenhouse gas emissions to combat global climate change has become an international necessity. A large portion of energy consumption is attributed to old buildings, with increased operational costs and decreased occupational comfort. These buildings require renovation measures that can be viewed as an opportunity to implement sustainable construction and create traditionally designed buildings based on sustainable construction. This study proposes a combination of building information modeling (BIM) with Design Builder and Meteonorm software to evaluate the environmental impact of renovating buildings during the operational phase. The process involved is demonstrated in a case study application to a typical two-story single-family residential building in Tehran city, in which the building’s materials, weight, and volume are determined using Revit software, and Design Builder is used to simulate the renovation effect on various building components – showing that, by combining the most effective insulation, glass, heating system, and doors, a 15% reduction in energy consumption and 44% reduction in CO2 emissions could be achieved. The study significantly advances knowledge in sustainable building practices by introducing a practical framework for decision-making in environmentally conscious building renovations, focusing on such crucial elements as insulation materials, window glass types, heating systems, and door materials. It also provides valuable insights into the practical implications of weather data for accurate environmental forecasting, emphasizing the methodology's applicability and adaptability to similar contexts, as evidenced by its successful application in a real-world case in Tehran.

Item Type: Article
Uncontrolled Keywords: Architecture; Building information modeling; environmental assessment; single-family building; CO 2 emissions; energy consumption; Climate change; Software; Insulation; Building components; Heating; Emissions; Buildings; Adaptability; Greenhouse gases; Residential buildings; Residential areas; Sustainability; Environmental impact; Sustainable practices; Renovation; Global climate; Green buildings; Carbon dioxide; Carbon dioxide emissions; Heating systems; Decision making; Meteorological data
Index terms: weather, environmental assessment, climate change, building component, greenhouse gas, insulation, global climate change, design-builder, comfort, green building, environmental impact, adaptability, window, energy consumption, greenhouse gas emission, renovation, building renovation, residential area, decision-making, sustainable building practice, methodology, Tehran, carbon dioxide, heating system, carbon dioxide emission, forecasting, sustainable construction, CO2 emissions, sustainable practice, case study, meteorological data, building information modelling, residential building
Subjects: architectural elements, design practice, renovation and retrofit, research methods, Geography, sustainable construction, occupational health and safety management, sustainable practices, asset management, decision analysis, information systems, environmental health, data collection methods, construction type, air quality, user focus, environmental impact, zoning, climate science, practitioner, building materials, sustainability and energy, energy systems, prediction and forecasting
Topics: Digital Applications, Urban Studies, Design Practice, Sustainability, Construction Technology, Risk Management, Roles and Professions, Engineering Principles, Research Practice, Geographical Context, Health and Safety, Business Strategy
Descriptive scope: 5 PCTEA

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