Impact of Disasters in Shaping the Vernacular Architecture of Coastal Area
DOI:
https://doi.org/10.22232/stj.2025.13.01.11Keywords:
Natural disaster, Costal area, Cyclone, Resilient built environment, Vernacular architectureAbstract
Coastal regions are highly vulnerable to a range of disasters, such as hurricanes, storm surges, and tsunamis. Unfortunately, the increasing sea levels caused by climate change only serve to worsen these risks, resulting in more frequent flooding and erosion. These disasters not only pose a significant threat to human settlements, ecosystems, and infrastructure along the coastlines, but also highlight the urgent need for proactive measures to ensure resilience and adaptation. One approach that has shown promise in creating a climate-resilient built environment is vernacular architecture, which is the practice of local communities using locally sourced materials. Through years of experience and attempts to mitigate against disasters, vernacular architecture has evolved to incorporate specific construction techniques and architectural features that are better equipped to withstand such events. In this article, we explored how disasters have influenced the development of vernacular architecture in coastal settlements, focusing on three case studies from countries surrounding the western ring of the Bay of Bengal like Sinhalese jungle huts in Northern Sri Lanka, Odisha in India, and Bangladesh. To understand the impact of disasters on building design, we have selected five key features for investigation such as building form and shape, angle of the roof, roof materials, overhang length, and wall protection techniques. Through our research, we have observed that certain design elements are directly related to the intensity of disasters. For example, regions with lower rainfall, such as Odisha, exhibit shorter overhang lengths (0.35-0.4 meters) compared to areas like Sinhalese and coastal Bangladesh, where overhang lengths range from 0.45-0.6 meters [3-6]. Additionally, the choice of materials is influenced by both local availability and the impact of disasters. Thatch and bamboo, for instance, are commonly used as roofing materials in coastal areas of Bangladesh, while Sinhalese utilizes coconut thatch, dried coconut leaves, bamboo, or mud bindings. These interrelationships between design features and disasters in vernacular architecture have led us to examine the guidelines provided by the United Nations Development Programme (UNDP). Remarkably, Odisha has fully embraced these guidelines, resulting in a significant reduction in cyclone-related damages over the years. By conducting a comparative assessment of disaster intensity, design features and techniques, and the UNDP guidelines, our study provides valuable insights for future architects and policymakers working on built-environment projects in coastal areas. In conclusion, the vulnerability of coastal areas to disasters necessitates the adoption of proactive measures for resilience and adaptation. Vernacular architecture, with its focus on locally sourced materials and evolved construction techniques, has proven to be an effective approach. By understanding the interplay between design features, disasters, and international guidelines, architects and policymakers can create more resilient built environments in coastal regions.
References
Aktürk, Gül, and Hannah Fluck. 2022. "Vernacular Heritage as a Response to Climate: Lessons for Future Climate Resilience from Rize, Turkey." Land 11(2). doi: 10.3390/land11020276.
BNBC 2020. n.d. Bangladesh National Building Code 2020. Ministry of Housing and Public Works, Government of the People's Republic of Bangladesh.
Chakraborty, Subha, Debaleena Majumdar, Satiprasad Sahoo, and Swati Saha. 2021. "Assessment of Future Coastal Risk Zones along the Andaman Coast to Strengthen Sustainable Development." Environmental Earth Sciences 80(18). doi:10.1007/s12665-021-09940-9.
Aktürk, Gül, and Hannah Fluck. 2022. "Vernacular Heritage as a Response to Climate: Lessons for Future Climate Resilience from Rize, Turkey." Land 11(2). doi: 10.3390/land11020276.
BNBC 2020. n.d. Bangladesh National Building Code 2020. Ministry of Housing and Public Works, Government of the People's Republic of Bangladesh.
Chakraborty, Subha, Debaleena Majumdar, Satiprasad Sahoo, and Swati Saha. 2021. "Assessment of Future Coastal Risk Zones along the Andaman Coast to Strengthen Sustainable Development." Environmental Earth Sciences 80(18). Doi 10.1007/s12665-021-09940-9.
Chowdhury, Tasmiah. 2020. "Vernacular Architecture of Bangladesh." Rethinking the Future.
Clingen, Kira Bre, and Mark Robert Bavoso. 2017. "Challenges of Disaster Relief Housing: Evaluating Coastal Domestic Typologies in Eastern Sri Lanka.” Plan Journal 2(2):601-28. doi: 10.15274/tpj.2017.02.02.24.
College of Engineering & Technology. 2017. Critical Analysis of Traditional Architecture of Coastal Odisha with Special Refrence to Mahura Village, Khurda.
Dayaratne, Ranjith. 2018. "Toward Sustainable Development: Lessons from Vernacular Settlements of Sri Lanka." Frontiers of Architectural Research 7(3):334-46. doi: 10.1016/j. foar.2018.04.002.
Disaster Preparedness ECHO. 2013. Community based Disaster Risk Reduction in Sri Lanka.
Encyclopedia Britannica. 2024. "Bay of Bengal, Indian Ocean." (https://www.britannica.com/place/Bay-of-Retrieved Bengal).
Fernandes, Jorge, Marwa Dabaieh, Ricardo Mateus, and Luis Bragança. 2014. "The Influence of the Mediterranean Climate on Vernacular Architecture: A Comparative Analysis between the Vernacular Responsive Architecture of Southern Portugal and North of Egypt." Pp. 264-70 in World Sustainable buildings.
Hardy, Adam. 1999. "Birabalabhadrapur: A Brahmin Village in Orissa." South Asian Studies 15(1):67-83. doi: 10.1080/02666030.1999.9628567.
Luxbacher, Kirsten. 2011. Bangladesh's Comprehensive Disaster Management Programme.
Management, Gol-UNDP Disaster Risk, Ministry of Home Affairs Programme, and Government of India. 2006. Guidelines for Design and Construction of Cyclone/Tsunami Shelters.
Nissanka, Shavindree, Dilanthi Amaratunga, and Richard Peter Haigh. "Disaster Resilient Building Codes in Sri Lanka." Pp. 146-52 in 10th International Conference on Structural Engineering and Construction Management (ICSECM).
Patterns, Igration, O. F. Key, Countries of, Origin of, and Labour Migrants. 2006. "United Nations Economic and Social Commission for Asia and the Pacific (ESCAP)." Group (February):1-3.
Reza, Masood. 2021. Examine the Traditional Architecture, Urban Form and Pattern within the Region.
Sehbasaleem, Ms. 2019. “International Practices in Hilly Regions. Journal of Architecture and Construction 2(1):23-34.
Al Tawayha, Fajer, Luis Braganca, and Ricardo Mateus. 2019. "Contribution of the Vernacular Architecture to the Sustainability: A Comparative Study between the Contemporary Areas and the Old Quarter of a Mediterranean City" Sustainability (Switzerland) 11(3). doi: 10.3390/ su11030896.
Tucker, Simon, Arosha Gamage, and Chitral Wijeyesekera. 2014. "Some Design Aspects of Sustainable Post-Disaster Housing." International Journal of Disaster Resilience in the Built Environment 5(2):163-81. doi: 10.1108/ IJDRBE-06-2012-0019.
UNO, Yuji, and Tetsumi HORIKOSHI. 2000. "Dimensions and Configurations of Openings in Traditional Varnacular Houses and Bioclimate in Japan." Journal of Architecture and Planning (Transactions of AIJ) 65(538):37-43. doi: 10.3130/ aija.65.37_7.
Wahiduzzaman, Md, Kevin K. Cheung, Jing Jia Luo, and Prasad K. Bhaskaran. 2022. "A Spatial Model for Predicting North Indian Ocean Tropical Cyclone Intensity: Role of Sea Surface Temperature and Tropical Cyclone Heat Potential." Weather and Climate Extremes 36. doi: 10.1016/j.wace.2022.100431.
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Copyright (c) 2025 Suchismita Nayak, Parthasarathi Mukhopadhyay, Sanket Ghosh, Soumen Mitra

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