Diagnostic analysis of potential risks and security systems in rocket development as a supporter of the defense environment ecosystem

Authors

  • Donny Haryogi Ramadhan Department of Weaponry Technology, Faculty of Defense Technology, Republic of Indonesia Defense University Complex of Indonesia Peace and Security Center (IPSC), Sentul, West Java, Indonesia
  • Gunaryo Gunaryo Department of Weaponry Technology, Faculty of Defense Technology, Republic of Indonesia Defense University Complex of Indonesia Peace and Security Center (IPSC), Sentul, West Java, Indonesia
  • Y.H. Yogaswara Department of Weaponry Technology, Faculty of Defense Technology, Republic of Indonesia Defense University Complex of Indonesia Peace and Security Center (IPSC), Sentul, West Java, Indonesia

DOI:

https://doi.org/10.55227/ijhess.v3i4.899

Keywords:

Defense, Risk, Safety, Rockets.

Abstract

State defense is essentially all universal defense efforts which means involving all citizens, territories, and other national resources, as well as being prepared early by the government and held in a total, integrated, directed, and continuous manner to uphold state sovereignty, territorial integrity and the safety of the entire nation from all threats both from outside and from within. This research aims to diagnostically analyze the potential risks and safety systems in rocket development as a benchmarking and basic foothold in the growth of the weapons technology ecosystem. This research uses a qualitative approach method with a literature study approach. The results obtained are in the form of various potential risks which can provide failures and losses in rocket development. The safety system that is possible to implement by prioritizing the suitability found in Indonesian rocket development, is to review and ensure the stages of preparation, integration and testing (or similar) in rocket development.

References

Anwar, S. (2015). PENGUASAAN TEKNOLOGI PERTAHANAN OLEH SDM PERTAHANAN INDONESIA DALAM RANGKA MENGHADAPI PEPERANGAN MASA DEPAN MASTERING DEFENCE TECHNOLOGY BY THE INDONESIAN HUMAN RESOURCES IN FACING THE FUTURE WARFARE (Vol. 5).

Artamonov, V. S., Gordienko, D. M., & Melikhov, A. S. (2017). Fire safety of ground-based space facilities on the spaceport “Vostochny.” Acta Astronautica, 135, 83–91. https://doi.org/10.1016/j.actaastro.2016.12.009

Barmin, I. V., Neustroev, V. N., & Lebedeva, L. I. (2018). Problems of ground safety supporting at launch of space vehicle with manned spacecraft. Acta Astronautica, 150, 6–14. https://doi.org/10.1016/j.actaastro.2017.12.008

BPPI, K. (2015). Buku Putih Pertahanan Indonesia (Kementrian Pertahanan, Ed.; 2015th ed.).

Creswell. Jhon W. (2018). Research Design Qualitative, Quantitative, and Mixed Methods Approach. SAGE Publications, Inc, Fifth Edition.

Damayanti, C. (2020). TINJAUAN YURIDIS KESELAMATAN PELUNCURAN WAHANA ANTARIKSA DALAM RANCANGAN PERATURAN PEMERINTAH TENTANG PENGUASAAN TEKNOLOGI KEANTARIKSAAN. Jurnal Bina Mulia Hukum, 5(1), 74–88. https://doi.org/10.23920/jbmh.v5i1.4

Galeev, A. G. (2017). Review of engineering solutions applicable in tests of liquid rocket engines and propulsion systems employing hydrogen as a fuel and relevant safety assurance aspects. International Journal of Hydrogen Energy, 42(39), 25037–25047. https://doi.org/10.1016/j.ijhydene.2017.06.242

Gradl, P. R., Greene, S. E., Protz, C., Bullard, B., Buzzell, J., Garcia, C., Wood, J., Cooper, K., Hulka, J., & Osborne, R. (2018). Additive manufacturing of liquid rocket engine combustion devices: A summary of process developments and hot-fire testing results. 2018 Joint Propulsion Conference. https://doi.org/10.2514/6.2018-4625

Jiang, C., Han, T., Gao, Z., & Lee, C. H. (2019). A review of impinging jets during rocket launching. In Progress in Aerospace Sciences (Vol. 109). Elsevier Ltd. https://doi.org/10.1016/j.paerosci.2019.05.007

Mahendro Cahyono, A., Djoko Andreas Navalino, R., Yogaswara, Y. H., Studi Teknologi Persenjataan, P., Teknologi Pertahanan, F., Pertahanan, U., Kunci, K., Persyaratan, A., & Marinir, K. (2021). ANALISIS PERSYARATAN DAN TINGKAT KESIAPTERAPAN TEKNOLOGI SISTEM SENJATA ROKET BALISTIK R-HAN 122 B UNTUK PERTAHANAN INDONESIA Requirements Analysis and Technology Readiness Level R-Han 122B Ballistic Rocket Weapon System towards Indonesian Defense. In 32 | Jurnal Teknologi Persenjataan | (Vol. 3).

Nugroho, W., Tjahjadi, H., Yogaswara, Y. H., & Lestariana, E. (2022). Risk Analysis of Operation Igniter Technology System for Rocket Motor X. In Jurnal Teknologi Dirgantara (Vol. 20, Issue 1).

Pou, C., Vallverdú, D., & Diez, E. (n.d.). Design of an On-board Flight Safety System for Space Microlaunch Vehicles. https://doi.org/10.13009/EUCASS2019-657

Ramdhani, A., Ramdhani, M. A., & Amin, A. S. (n.d.). Writing a Literature Review Research Paper: A step-by-step approach. www.insikapub.com

Samosir, G. (2012). PERHITUNGAN DAN PERANCANGAN IGNITER BERBASIS KALKULASI PROPULSI ROKET (Studi Kasus Roket RX-320). Jurnal Teknologi Dirgantara, 9(2), 102–113. https://doi.org/10.30536/j.jtd.2011.v9.a1678

Snyder, H. (2019). Literature review as a research methodology: An overview and guidelines. Journal of Business Research, 104, 333–339. https://doi.org/10.1016/j.jbusres.2019.07.039

Velthuysen, T., Broughton, K. M., Brooks, M., Pitot, J., Lineberry, D., & Tingley, E. (2018). Safety aspects of nitrous oxide use in hybrid rocket motor design and testing. 2018 Joint Propulsion Conference. https://doi.org/10.2514/6.2018-4411

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Published

2024-02-26

How to Cite

Donny Haryogi Ramadhan, Gunaryo, G., & Y.H. Yogaswara. (2024). Diagnostic analysis of potential risks and security systems in rocket development as a supporter of the defense environment ecosystem. International Journal Of Humanities Education and Social Sciences (IJHESS), 3(4). https://doi.org/10.55227/ijhess.v3i4.899

Issue

Section

Social Science