FUZZY ANALYSIS DAN MATRIKS RESIKO KEBAKARAN DI GEDUNG KAMPUS FAKULTAS TEKNIK UNIVERSITAS PASUNDAN

Authors

  • Riza Fathoni Ishak Program Studi Teknik Industri, Universitas Pasundan, Indonesia
  • Toto Supriyono Program Studi Teknik Mesin, Universitas Pasundan, Indonesia
  • Deden Syarifudin Program Studi Teknik Perencanaan Kota dan Wilayah, Universitas Pasundan, Indonesia

DOI:

https://doi.org/10.25157/moderat.v10i1.3619

Keywords:

Bobot, fuzzy analisis, manajemen kebakaran, penilaian resiko

Abstract

The security and safety of lecturers, employees and students is one important aspect that needs to be guaranteed by campus managers, so that the implementation of the academic process can run comfortably and safely. The condition of the building is quite old, the condition of the Light Fire Extinguisher (APAR) is also not feasible, the condition of the emergency stairs is still used in general, there is no special evacuation emergency stairs, fire detection equipment is not functioning. Dimensions of Emergency Equipement, and Hazard Detectors, Emergency Planning, Building Facilities Safety Fire, and Equipment Potential Fire, as variables that will be measured using Fuzzy Analysis to produce weighting values and priorities for fire management management, with the weight value of Emergency Equipement, and Hazard Detectors is 0.48 as priority 1 in the future that needs to be improved.... Based on the fire risk assessment of the Faculty of Engineering building on Jl.Setiabudi involving the building area (lectures, lecturer rooms, and laboratories) and outside the building open areas and parking lots. Through a limited purposive sampling approach, the fire risk value for open areas is in the value of 6 medium risk categories, for teaching and lecturer rooms in the range of 4-9 high risk categories, while the laboratory area is in the range of 4-8 high risk categories. The maintenance aspect of fire detection and handling equipment is a suggestion for future building managers of the Faculty of Engineering Unpas.

References

A. Jain et al., Managing Health, Safety and Well-Being, Aligning Perspectives on Health, Safety and Well-Being, © Springer Science+Business Media B.V., part of Springer Nature 2018 https://doi.org/10.1007/978-94-024-1261-1_1

M.. Chuang, J.H. Liu, ,” Fuzzt Integral With Particle Swarm Optimization for a Motor Imagery Based Brain Computer Interface , 2008, IEEE Transactions on Fuzzy Systems ( Volume:25, Issue:1, February 2017

Dinda Pratiwi, Herman Bagus Dwicahyo, Dani Nasirul Haqi: “ Implementation of Occupational Health and Safety Standards for Office Buildings in Universitas Airlangga Rectorate Building “ The Indonesian Journal of Occupational Safety and Health, Volume 11, Issue 2, August 2022: 224-23

Ditdit Nugraha Utama, “Logika Fuzzy untuk Model Penunjang Keputusan, Dilengkapi dengan Penerapan Contoh Kasus , Juli 2021, Publisher Garudhawaca ISBN : 978-602-6581-71-7

Fazri, Ramadhan : “Analisis Kesehatan dan Keselamatan Kerja (K3) Menggunakan Metode Hazard Identification Risk Assessment and Risk Control (HIRARC)” Seminar Nasional Riset Terapan 2017 | SENASSET 2017 ISSN: 978-602-73672-1-0

Juwana, Jimmy S. Panduan Sistem Bangunan Tinggi untuk Arsitek dan Praktisi Bangunan. (2005). Jakarta: Erlangga

Keputusan Menteri Ketenagakerjaan No. 38 Tahun 2019 .” Standar Kompetensi Kerja Nasional Indonesia Bidang Keselamatan dan Kesehatan Kerja

Keputusan Menteri Negara Pekerjaan Umum Nomor: 10/Kpts/2000 Tentang Ketentuan Teknis Pengamanan Terhadap Bahaya Kebakaran Pada Bangunan Gedung Dan Lingkungan

Kusumadewi, Sri. dan Purnomo, Hari. Aplikasi Logika Fuzzy untuk Pendukung Keputusan. 2013.Yogyakarta: Graha Ilmu.

Peraturan Kementerian Kesehatan No 48 Tahun 2016 ,” Standar Keselamatan dan Kesehatan Kerja Perkantoran. “

National Fire Protection Association. 2002. NFPA reporters guide to fire and NFPA to all about fire. Diunduh dari http://www.nfpa.org/news-andresearch/news-and-media/press-room/reporters-guide-to-fire-and-nfpa/allabout-fire.

Peraturan Daerah DKI Jakarta No 3 Tahun 1992 tentang Penanggulangan Bahaya Kebakaran di Wilayah DKI Jakarta

Permen PUPR No 10 Tahun 2021 tentang Pedoman Sistem Manajemen Keselamatan Konstruksi, Kementerian PUPR Republik Indonesia

Peraturan Menteri Pekerjaan Umum dan Perumahan Rakyat Nomor 26/PRT/M/2008 Tahun 2008 tentang Persyaratan Teknis Sistem Proteksi Kebakaran Pada Bangunan Gedung dan Lingkungan

Peraturan Pemerintah No 16 Tahun 2021 ” Peraturan Pelaksanaan Undang-Undang Nomor 28 Tahun 2002 Tentang Bangunan Gedung

PP No. 50 Tahun 2012 tentang Penerapan Sistem Manajemen Keselamatan dan Kesehatan Kerja. Kementerian Ketenagakerjaan Republik Indonesia

Peraturan Menteri Ketenagakerjaan Republik Indonesia No.26, 2014 Penyelenggaraan Penilaian Penerapan Sistem Manajemen Keselamatan Dan Kesehatan Kerja, Kemnterian Ketenagakerjaan Republik Indonesia

Peraturan Menteri Tenaga Kerja Dan Transmigrasi No : Per.04/Men/1980 Tentang Syarat-Syarat Pemasangan Dan Pemeliharan Alat Pemadam Api Ringan.

Purnama, D.S.. Analisa Penerapan Metode HIRARC (Hazard Identification Risk Assessment and Risk Control) dan HAZOPS (Hazard and Operability Study) dalam Kegiatan Identifikasi Potensi Bahaya dan Risiko Pada Proses Unloading Unit di PT. Toyota Astra Motor. 2015, Jurnal Pasti. Vol. 9. No. (3). pp. 311-31

Ramli, Soehatman. Petunjuk Praktis Manajemen Kebakaran (Fire Management). 2010.Jakarta: Dian Rakyat

Susilo, Frans. Himpunan dan Logika Kabur: serta Aplikasinya. 2006.Yogyakarta: Graha Ilmu

Wijaya, A., Panjaitan, W.S. & Palit, H.C. Evaluasi Kesehatan dan Keselamatan Kerja dengan Metode HIRARC pada PT. Charoen Pokphand Indonesia. 2015.Jurnal Tirta. Vol. 3. No. (1). pp. 29-34

Published

2024-02-26

How to Cite

, R. F. I., Toto Supriyono, & Deden Syarifudin. (2024). FUZZY ANALYSIS DAN MATRIKS RESIKO KEBAKARAN DI GEDUNG KAMPUS FAKULTAS TEKNIK UNIVERSITAS PASUNDAN. Moderat : Jurnal Ilmiah Ilmu Pemerintahan, 10(1), 201–216. https://doi.org/10.25157/moderat.v10i1.3619