Framework of BIM-Based Quantitative Evaluation for Enhancing Fire Safety Performance of Buildings

Author:

Kim Sohyun1,Ma Jongil1,Lee Jaewook2ORCID,Hong Taehoon3ORCID,An Jongbaek4,Jeong Kwangbok5ORCID

Affiliation:

1. Graduate Research Assistant, Dept. of Architectural Engineering, Sejong Univ., Seoul 05006, South Korea.

2. Professor, Deep Learning Architecture Research Center, Dept. of Architectural Engineering, Sejong Univ., Seoul 05006, South Korea. ORCID: .

3. Underwood Distinguished Professor, Dept. of Architecture and Architectural Engineering, Yonsei Univ., Seoul 03722, South Korea. ORCID: .

4. Graduate Research Assistant and Ph.D. Student, Dept. of Architecture and Architectural Engineering, Yonsei Univ., Seoul 03722, South Korea.

5. Assistant Professor, Deep Learning Architecture Research Center, Dept. of Architectural Engineering, Sejong Univ., Seoul 05006, South Korea (corresponding author). ORCID: .

Publisher

American Society of Civil Engineers (ASCE)

Subject

Management Science and Operations Research,Strategy and Management,General Engineering,Industrial relations,Building and Construction

Reference55 articles.

1. Managing Digital Integration Routines in Engineering Firms: Cases of Disruptive BIM Cloud Collaboration Protocols

2. External fire-escape stairs risk analysis: A case study in İstanbul;Avlar E.;Megaron,2022

3. A method on developing 3D/BIM-based real time fire disaster information management;Bae S.;Korean J. Constr. Eng. Manage.,2023

4. Comfortable and maximum walking speed of adults aged 20—79 years: reference values and determinants

5. Development of BIM, IoT and AR/VR technologies for fire safety and upskilling

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