Implementasi Sistem Proteksi Kebakaran Terintegrasi untuk Meningkatkan Keselamatan Ruangan di Gedung Kampus Unpas Setiabudi

Toto Supriyono, Yudha Hany Pratama, Lutfi khoirul ihsan, Mochammad Rafly, Riza Fathoni Ishak

Abstract


Abstrak. Kebakaran pada bangunan bertingkat, khususnya gedung pendidikan, merupakan risiko kritis yang dapat menimbulkan kerugian material dan korban jiwa. Permasalahan utama dalam mitigasi kebakaran adalah kurangnya integrasi antar sistem proteksi, seperti deteksi, alarm, pemadam otomatis, dan jalur evakuasi. Penelitian ini bertujuan untuk menganalisis efektivitas implementasi sistem proteksi kebakaran terintegrasi pada gedung kampus melalui pendekatan kuantitatif berbasis observasi lapangan dan simulasi. Parameter yang dianalisis meliputi waktu deteksi, respons sistem sprinkler, waktu evakuasi, dan laju penyebaran api. Hasil menunjukkan bahwa sistem terintegrasi mampu menurunkan waktu deteksi sebesar ±40%, mempercepat evakuasi hingga ±33%, serta mengurangi laju pelepasan panas hingga 50–60%. Selain itu, rasio keselamatan (ASET/RSET) meningkat dari kondisi tidak aman (<1) menjadi aman (>1). Penelitian ini memberikan kontribusi berupa model evaluasi sistem proteksi kebakaran yang komprehensif dan aplikatif untuk meningkatkan keselamatan bangunan pendidikan

Keywords


proteksi kebakaran; sistem terintegrasi; evakuasi; sprinkler; keselamatan gedung

Full Text:

PDF

References


[1] A. B. Abu and M. Spearpoint, “Fire safety engineering design of buildings: A review of evacuation modelling approaches,” Fire Safety Journal, vol. 91, pp. 246–259, 2017.

[2] J. Wang, H. Zhang, and Y. Li, “Simulation of evacuation in high-rise buildings under fire conditions,” Safety Science, vol. 127, p. 104692, 2020.

[3] Y. Zhang, X. Huang, and G. Chen, “Performance-based fire safety design for buildings using integrated fire protection systems,” Journal of Building Engineering, vol. 45, p. 103482, 2022.

[4] S. Gwynne and E. Rosenbaum, “Employing the hydraulic model in assessing emergency movement,” Fire Technology, vol. 52, no. 2, pp. 377–398, 2016.

[5] M. Hurley et al., SFPE Handbook of Fire Protection Engineering, 5th ed. New York, NY, USA: Springer, 2016.

[6] National Fire Protection Association, NFPA 101: Life Safety Code, Quincy, MA, USA: NFPA, 2021.

[7] National Fire Protection Association, NFPA 13: Standard for the Installation of Sprinkler Systems, Quincy, MA, USA: NFPA, 2022.

[8] J. Liu, R. Luo, and K. Wang, “Effectiveness of automatic sprinkler systems in controlling building fires,” Fire Safety Journal, vol. 120, p. 103000, 2021.

[9] H. Chen, L. Xu, and Z. Li, “Real-time fire detection system based on integrated sensor networks,” Sensors, vol. 21, no. 14, p. 4702, 2021.

[10] A. Ahmad, M. Khan, and S. Alshammari, “Smart fire safety management system using IoT for building applications,” Sustainable Cities and Society, vol. 82, p. 103902, 2023.


Refbacks

  • There are currently no refbacks.


About the JournalJournal PoliciesAuthor Information
  • Focus and Scope
  • Editorial Board
  • International Peer Review
  • Open Access Statement
  • Sponsorships
  • Contact Us
  • Google Scholar Most Cited Paper
  • Publication Ethics
  • Peer Review Policy
  • Review Guideline
  • Archiving
  • Author Guidelines
  • Online Submission
  • Author Fee / Article Publication Charge
  • Plagiarism Policy
  • Article withdrawal
  • For Readers
  • For Authors
  • Journal History

Jurnal Teknik Mesin (JTM)
p-ISSN: 2087-3832  e-ISSN : 3089-1965
Website: http://jurnal.ubl.ac.id/index.php/JTM
Email: jurnalteknikmesin@ubl.ac.id
Published by: Program Studi Teknik Mesin, Fakultas Teknik Universitas Bandar Lampung
Office: Jalan Zainal Abidin Pagar Alam No 26, Bandar Lampung, Indonesia

This work is licensed under a Creative Commons Attribution 4.0 International License
Technical Support by:  RYE Education Hub