ANALISIS PERBANDINGAN POTENSI BAHAYA DAN EFEKTIVITAS PROSEDUR EVAKUASI ANTARA PESAWAT BERBAHAN BAKAR HIDROGEN DAN BAHAN BAKAR KEROSENE

Authors

  • Wahyu Cakra Nugraha Politeknik Penerbangan Indonesia Curug
  • Bhima Shakti Arrafat Politeknik Penerbangan Indonesia Curug
  • Ichyu Machmiyana Politeknik Penerbangan Indonesia Curug

DOI:

https://doi.org/10.31004/jrpp.v7i4.36954

Keywords:

Pesawat Berbahan Bakar Hidrogen, Pesawat Berbahan Bakar Minyak Tanah, Bahaya Intrinsik, Prosedur Evakuasi, Hidrogen Cair, Keselamatan Penumpang, Peraturan Penerbangan, Tanggap Darurat, Risiko Kebakaran.

Abstract

Penelitian ini mengevaluasi potensi bahaya intrinsik dan efektivitas prosedur evakuasi pada pesawat berbahan bakar hidrogen dibandingkan dengan pesawat berbahan bakar kerosene konvensional. Dengan metode kualitatif berdasarkan data sekunder dari jurnal dan regulasi yang ada, penelitian ini menganalisis implikasi penggunaan hidrogen cair dalam penerbangan terhadap keselamatan penumpang dalam situasi darurat, khususnya kebakaran. Temuan menunjukkan adanya perbedaan karakteristik bahan bakar yang mempengaruhi risiko keselamatan, serta menunjukkan bahwa beberapa regulasi evakuasi pada pesawat konvensional mungkin perlu penyesuaian agar sesuai dengan karakteristik unik bahan bakar hidrogen. Hasil penelitian ini diharapkan dapat memberikan pandangan tambahan dalam pengembangan regulasi keselamatan untuk pesawat berbahan bakar hidrogen.

References

Anderson, M. (2019). Conventional Aviation Fuel: Fire Hazards and Safety Regulations. Aviation Fuel Safety Review, 7(3), 200-215.

Aviation Safety Journal. (2022). Revisiting Aircraft Evacuation Regulations for Alternative Fuel Aircraft. Aviation Safety Regulations Review, 9(4), 300-315.

Clark, P., Zhang, H., & Green, M. (2020). Cryogenic Properties of Liquid Hydrogen and Implications for Storage and Transportation. International Journal of Hydrogen Energy, 45(17), 10230-10245.

Federal Aviation Administration (FAA). (2023). Federal Aviation Regulations (FAR) Part 25: Airworthiness Standards: Transport Category Airplanes. FAA Publications.

HySafe, International Association for Hydrogen Safety. (2022). Guidelines for Hydrogen Safety in Aviation Applications. HySafe Publications.

International Air Transport Association (IATA). (2023). Sustainable Aviation Fuel: Hydrogen's Role in Future Aviation. IATA Publications.

International Civil Aviation Organization (ICAO). (2022). Annex 6 to the Convention on International Civil Aviation: Operation of Aircraft. ICAO Publications.

Jones, A., & Brown, L. (2022). Fire Risks and Mitigation Strategies for Hydrogen-Powered Aircraft. Journal of Aviation Safety, 18(2), 90-102.

Lee, S., et al. (2023). Health Risks Associated with Hydrogen Exposure in Aviation. Journal of Occupational Health and Safety, 12(2), 85-97.

Lee, S., Kim, Y., & Park, J. (2021). Managing Cryogenic Hazards in Liquid Hydrogen Applications. International Journal of Hydrogen Energy, 46(20), 13400-13415.

Smith, J. (2021). Hydrogen as a Fuel for Aviation: An Environmental Perspective. Journal of Clean Aviation, 15(3), 125-140.

White, D., & Taylor, R. (2021). Fire Detection Challenges in Hydrogen-Fueled Aircraft. Safety Engineering, 14(1), 44-56.

Williams, T., Chen, L., & Davis, P. (2022). Environmental Benefits of Hydrogen Fuel in Aviation: A Comparative Analysis with Kerosene. Environmental Science Journal, 10(4), 250-265.

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Published

2024-10-29

How to Cite

Nugraha, W. C. ., Arrafat, B. S. ., & Machmiyana, I. . (2024). ANALISIS PERBANDINGAN POTENSI BAHAYA DAN EFEKTIVITAS PROSEDUR EVAKUASI ANTARA PESAWAT BERBAHAN BAKAR HIDROGEN DAN BAHAN BAKAR KEROSENE. Jurnal Review Pendidikan Dan Pengajaran (JRPP), 7(4), 15917–15920. https://doi.org/10.31004/jrpp.v7i4.36954