Evaluation of the Fire Impact of Cellulose-Based Indoor Building Finishing Materials According to Changes in Room Size Aspect Ratio

Author:

Kim Yongjoo1ORCID,Rie Dongho2ORCID

Affiliation:

1. Graduate School of Safety Engineering, Incheon National University, Incheon 22012, Republic of Korea

2. Fire Disaster Prevention Research Center of Safety Engineering, Incheon National University, Incheon 22012, Republic of Korea

Abstract

In modern society, the size of buildings tends to expand due to technological advances. However, while prioritizing performance design and specific building materials, fire research has fallen short of creating a comprehensive fire characteristic database for building materials. This study presents a plan for building a big data resource to evaluate the fire performance of cellulose-based flame retardant building finishing material in buildings of varying sizes. The three types of building finishing materials applied in this study are polyurethane foam, MDF, and cellulose-based building finishing materials. The variables were determined based on the floor area, and the change in floor area was calculated using the aspect ratio, a dimensionless number. Data analysis utilized the Fire Dynamics Simulator (FDS) to determine the time required to meet life safety standards for temperature, visibility, and Fractional Effective Dose (FED). The results confirm a correlation between the safe evacuation time (ASET) and increasing floor area. Additionally, the study demonstrates that cellulose-based flame-retardant building finishing material effectively maintains safe evacuation times even with increasing floor areas, as evidenced by increases of 41.0 s, 13.2 s, and 97.5 s in temperature, visibility, and FED, respectively.

Publisher

MDPI AG

Reference33 articles.

1. Internal Association of Fire and Rescue Services (2024, March 01). Center for Fire Statistics World Fire Statistics. Available online: https://ctif.org/world-fire-statistics.

2. Wu, L., Lv, D., and Cheng, W. (2010, January 18–20). The phased evaluation and information visualization of city building fire hazards. Proceedings of the 2010 4th International Conference on Bioinformatics and Biomedical Engineering, iCBBE 2010, Chengdu, China.

3. Survey on Existing High-Rise Building Fire Safety Assessment Based on Fire Compartment and Fire Protection System Maintenance;Choi;Fire Sci. Eng.,2020

4. Measuring Effectiveness of Safety Management System of Multistory Building: Fire Safety Audit;Ali;Urban. Archit. Constr.,2023

5. Reducing fire risk in buildings: The role of fire safety expertise and governance in building and planning approval;Benson;J. Hous. Built Environ.,2022

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