Francis, A; Padmanabhan, V and Thomas, A (2025) A life cycle assessment-based case study analysis of the sustainability of "vernacular" versus contemporary construction techniques. Engineering, Construction and Architectural Management, 32(9), pp. 6187-6212. ISSN 0969-9988
Abstract
Purpose - Contemporary construction techniques provide benefits of speed and cost savings on a large scale, and is viable in urban regions with exorbitant housing demand. In rural areas, where scale and access to technology are unavailable, locally prevalent vernacular architecture and methods are more suitable. Although vernacular construction techniques have historically proven more sustainable and climate-sensitive, the lack of skilled labour and lack of versatility in material selection limits its application on large-scale projects. This study explores the choice of building design and technology, from the context of embodied energy, carbon and other life cycle impacts for housing construction. Design/methodology/approach - Life cycle assessment (LCA) that evaluates impacts due to the products/processes is used to analyse different construction techniques. Further a detailed estimation of embodied carbon and embodied energy is done for both “vernacular” and “contemporary” choices of construction methodology for a case study project. Findings - The building constructed using vernacular techniques has lower embodied carbon and energy by over 30% compared to the other clusters designed using contemporary confined masonry techniques. However, with a few external interventions the contemporary methods can be implemented with improved sustainability. Research limitations/implications - The limitation of the study is that it presents a case study-based exploration into comparing construction techniques to provide a practical understanding of making sustainable design choices and, hence, is limited to two construction methods. However, the same method could be extended to compare other construction techniques. Furthermore, it does not present a whole building LCA since the operating phase impacts are assumed to be fairly constant for such housing type, irrespective of the chosen method. Similarly, the demolition phase or the potential of reuse of the waste generated, water consumption and cultural and social heritage are not investigated in comparing the alternatives. Nevertheless, future studies could perform extensive exploratory and modelling studies on the operation phase and demolition phase to understand these impacts further. Practical implications - In mass housing projects that belong to the so-called “affordable housing” or low-income housing category, sustainability concerns are not yet at the forefront of the decision-making process. Therefore, this study emphasizes the importance of incorporating sustainability into building design and construction and making sustainability accessible to even low-income communities. Adequate planning, social awareness initiatives and imparting skills and knowledge of sustainability to these communities are of utmost importance. The choice of design and materials should be encouraged by keeping in mind lower upfront costs as well as low maintenance and operational costs. Social implications - The primary implications of the study are that the vernacular technologies are much superior in terms of sustainability in comparison to conventional construction of RCC framed structures as well as contemporary construction methods such as confined masonry. However, the implementation of such techniques presents significant challenges such as a lack of skilled forces, increased maintenance and lack of flexibility to minor modifications. Hence, although being a sustainable choice its acceptance and execution present practical difficulties. Therefore, this study primarily aims to reinforce the belief in vernacular architecture and techniques to build sustainable and resilient communities while highlighting the challenges of the modern world in implementing them. Originality/value - Most studies advocate using construction methods based on their ease of implementation, maintenance or cost. However, this study highlights the importance of considering the aspect of sustainability in the context of the choice of methods for housing construction in urban and semi-urban areas. This study also addresses the need not to overlook vernacular construction technologies while selecting technology for housing for low-income communities.
| Item Type: | Article |
|---|---|
| Uncontrolled Keywords: | affordable housing; confined masonry; embodied carbon; embodied energy; life cycle assessment; slum rehabilitation project; sustainability; vernacular construction |
| Index terms: | rehabilitation project, water consumption, housing, urban area, methodology, exploration, confined masonry, operation phase, life cycle assessment, construction method, embodied carbon, skilled labour, sustainable design, resilient community, rural area, cost saving, implementation, modelling, future study, embodied energy, construction technology, vernacular architecture, slum, income, affordable housing, residential construction, life cycle, decision-making process, estimation, building design, mass housing project, low-income housing, case study |
| Subjects: | decision analysis, health conditions and diseases, economics, construction integration, management, project delivery, financial and cost management, energy systems, research design and methodology, data collection methods, value management, building construction, land use and regional development, housing and residential development, communities and social development, heritage and conservation, urban form and morphology, research methods, structural engineering, economic development, urban design, design process, environmental resource management, economic analysis, architectural design, analytical methods, contractual arrangements, digital engineering, construction type, environmental impact |
| Topics: | Site Management, Human Resources, Design Practice, Digital Applications, Urban Studies, Construction Technology, Stakeholder Management, Research Practice, Business Strategy, Cost Management, Procurement, Sustainability, Risk Management, Project Management, Engineering Principles, Health and Safety |
| Descriptive scope: | 5 PCTEA |
N.B. Descriptive scope is a count of how many of the five facets of empirical research are indicated by the words used in title, abstract and keywords. It is not intended as a judgement on the research; merely a count of the kind of word we would expect to indicate Phenomenon, Concepts, Theoretical framing, Empirical techniques, Analytical techniques. If all five are present, then a code of “5 PCTEA” will indicate this. If you feel the coding for this record is questionable, we welcome discussion around the terms we matched or the way we categorized them. The facet you would expect may not be coded, or a facet may be coded inappropriately. This can also bear on a larger question, of which facets should be treated as defining in construction management research. Please get in touch, and we will look at it. More details here