AI Article Synopsis

  • This study develops a deep learning algorithm to predict financial losses from accidents at apartment construction sites, addressing increased risks due to urban density and climate change.
  • It analyzes insurance claim data from a leading South Korean insurance company to create a model that aids in the sustainable management of construction projects.
  • The findings offer essential insights for managing financial losses and can serve as a valuable resource for future construction management research.

Article Abstract

This study aims to generate a deep learning algorithm-based model for quantitative prediction of financial losses due to accidents occurring at apartment construction sites. Recently, the construction of apartment buildings is rapidly increasing to solve housing shortage caused by increasing urban density. However, high-rise and large-scale construction projects are increasing the frequency and severity of accidents occurring inside and outside of construction sites, leading to increases of financial losses. In particular, the increase in severe weather and the surge in abnormal weather events due to climate change are aggravating the risk of financial losses associated with accidents occurring at construction sites. Therefore, for sustainable and efficient management of construction projects, a loss prediction model that prevents and reduces the risk of financial loss is essential. This study collected and analyzed insurance claim payout data from a main insurance company in South Korea regarding accidents occurring inside and outside of construction sites. Deep learning algorithms were applied to develop predictive models reflecting scientific and recent technologies. Results and framework of this study provide critical guidance on financial loss management necessary for sustainable and efficacious construction project management. They can be used as a reference for various other construction project management studies.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8967902PMC
http://dx.doi.org/10.1038/s41598-022-09453-wDOI Listing

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