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The Stability Analyze of KM. Rejeki Baru Kharisma of Tarakan – Tanjung Selor Route

Analisis Stabilitas KM. Rejeki Baru Kharisma Rute Tarakan – Tanjung Selor

*Alamsyah Alamsyah  -  Program Studi Teknik Perkapalan, Institut Teknologi Kalimantan, Indonesia
Zen Zulkarnaen  -  Program Studi Teknik Perkapalan, Institut Teknologi Kalimantan, Indonesia
Suardi Suardi  -  Program Studi Teknik Perkapalan, Institut Teknologi Kalimantan, Indonesia
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Abstract
Ship stability that is not according to the IMO standard will make the ship capsize when operating. The purpose of this research is to determine the cause of the overturn in terms of the stability criteria of the ship. The method used is software  of simulation. Stability analysis is carried out with the load case that occurs in the field when an accident occurs and the ideal loadcase according to PM 104 2017 standards about’s the transportation of operation. The results showed is cargo of goods placed on the roof top (loadcase 1) based on the criteria of Intact Stability; area of the stability arm curve at heeling 0° ~ 30° = 0.9417 m.deg, area 0° ~ 40° = 1,0200 m.deg, 30° ~ 40° = 0.0783 m.deg, GZ value at heeling 30° = 0.029 m, angle of occurrence of maximum GZ = 21.8°, and the initial GMt value = 0.135 m, the results stated that all did not meet the Intact Stability code A.749 criteria, while in it was obtained cargo of goods placed in the hull (loadcase 2) based on Intact Stability; area of the stability arm curve at heeling 0° ~ 30° = 4.5338 m.deg, area 0° ~ 40° = 7.1643 m.deg, area 30° ~ 40° = 2.6305 m.deg, GZ value at heeling 30° = 0.265 m, angle of occurrence of maximum GZ = 34.5°, and the initial GMt value = 0.621 m, the results stated that all met the Intact Stability code A.749 criteria
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Keywords: stability; capsize; loadcase; arm stability; safety; speed boat

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  1. Ali, B. (2011).Evaluasi Bertin’s Coefficient Pada Prediksi Roll Kapal Sarat Rendah Dalam Weather Criterion. Prosiding Seminar Nasional Teori dan Aplikasi Kelautan. Surabaya: Institut Teknologi Sepuluh Nopember,
  2. Fadillah, A., Manullang, S., Irvana, R. (2019). Stabilitas, Hambatan Dan Olah Gerak Kapal Ikan Multi Purpose Net/Line Hauler 20 Gt Berdasarkan Kajian Ukuran Dan Bentuk Kasko Kapal. Marine Fisheries: Journal of Marine Fisheries Technology and Management, 10(2), 117-128.
  3. Atwood, E.L., Pengelly. (1967). Theoritical Naval Architecture. Great Britain : Longmans
  4. Bačkalov I, Bulian B, Cichowicz J. (2016). Ship Stability, Dynamics and Safety: Status and Perspectives from are View of Recent STAB Conferences and ISSW Events. Ocean Engineering. 116(6): 312-349
  5. Barrass, C. B., Derrett, D. R. (2012). Ship Stability For Masters and Mates. Ed 7. Oxford: Butterworth-Heinemann
  6. Bhattacharya R. (1978). Dynamic of Marine Vehicles. New York: John Wiley and Son, Inc
  7. Boulougouris E, Cichowicz J, Jasionowski A, Konovessis D. (2016). Improvement of Ship Stability and Safety in Damaged Condition Through Operational Measures: Challenges and Opportunities. Ocean Engineering. 122(12), 311-316
  8. Dinas Perhubungan Kabupaten Bulungan (2013). Rejeki Baru Kharisma (Tanda Selar: GT 6 No.454 B-14). Provinsi Kalimantan Utara.
  9. Dokkum, K. V. (2003). Ship Knowledge: A Modern Encyclopedia. the Netherlands: Dokmar
  10. Fyson, J. (1985). Design of Small Fishing Vessels. England: Fishing News Book Ltd
  11. Hind, J.A. (1967). Stability and Trim of Fishing Vessel. London: Fishing News Ltd
  12. Hind, J. A. (1982) Stability and Trim of Fishing Vessels and Other Small Ships. United Kingdom: Fishing News Books
  13. Hutauruk, RM., Rengi, P. (2014). Respons Gerakan Kapal Perikanan Hasil Optimasi terhadap Gelombang. Jurnal Perikanan dan Kelautan. 19(1), 13-22
  14. International Maritime Organization. (2002). Code On Stability For All Types Of Ships. London : International Maritime Organization
  15. International Maritime Organization, (2008). International Code on Intact Stability, 2008- Part A. London : International Maritime Organization
  16. Istopo. (1997). Stabilitas Kapal. Jakarta: Yayasan Corps Alumni Akademi Ilmu Pelayaran (CAAIP)
  17. Jin, D., Kite-Powell, H.L., Thunberg, E., Solow, A.R., Talley, W.K. (2002). A Model of Fishing Vessel Accident Probability. Journal of Safety Research. 33(4), 497-510
  18. Jung, S.K., Roh, M.I., Kim, K.S. (2018). Arrangement Method of a Naval Surface Ship Considering Stability, Operability, and Survivability. Journal Ocean Engineering. 152(6), 316-333
  19. Kayadoe, G. W., Dien, H. V., & Pamikiran, R. D. C. (2015). Kajian tentang stabilitas KM. Surya Prima yang dibuat di Desa Borgo, Kec. Tanawangko, Kab. Minahasa. Jurnal Ilmu dan Teknologi Perikanan Tangkap, 2(1), 19-22.
  20. Komite Nasional Keselamatan Transportasi Republik Indonesia, (2018). FINAL KNKT.17.07.22.03 Laporan Investigasi Kecelakaan Pelayaran Terbaliknya Rejeki Baru Kharisma (GT 6 No. 454 B-14) Di Perairan Dermaga Tengkayu-I, Tarakan, Kalimantan Utara, Republik Indonesia
  21. Krata, P. (2008). Total Losses of Fishing Vessels Due to the Insufficient Stability. International Journal on Marine Navigation and Safety of Sea Transportation. 2(3), 311- 315
  22. Marjoni, B. H., Iskandar, M. I. (2010). Static and Dynamic Stability of a Purse seiner at Coastal Fishing Port in Lampulo Banda Aceh Nanggroe Aceh Darussalam. Marine Fisheries: Journal of Teknologi dan Manajemen Perikanan Laut, 1(2), 113-122
  23. Matafi, S. N., Dien, H. V., Pangalila, F. P. (2015). Simulasi pengaruh trim terhadap stabilitas kapal purse seine. Jurnal Ilmu dan Teknologi Perikanan Tangkap, 2, 13-18
  24. Nomura, M. & Yamazaki, T. (1977). Fishing Techniques I. Tokyo: Japan International Corporation Agency
  25. Novita, Y., Martiyani, N., Ariyani, RE. (2014). Kualitas Stabilitas Kapal Payang Palabuhanratu Berdasarkan Distribusi Muatan. Jurnal IPTEKS PSP. 1(1): 28-39
  26. O’Hanlon JF, McCauley ME. (1974). Motion Sickness Incidence as a Function of the Frequency and Acceleration of Vertical Sinusoidal Motion. Aerospace Medicine. 45(4): 366-375
  27. Papanikolaou, A. (2014). Ship Design : methodologies of preliminery design. Springer
  28. Parlindungan, M., Hadi E. S. (2010). Desain Kapal Ikan Dengan Bentuk Lambung Katamaran Yang Menggunakan Sistem Penggerak Layar Mesin Untuk Muatan Ikan Hidup. TEKNIK, 31(1),75-3
  29. Paroka, D. (2009). Analisis Tinggi Metacentra Dan Lambung Timbul Minimum Kapal Penyeberangan Antar Pulau. Prosiding Seminar Nasional Teori dan Aplikasi Teknologi Kelautan. Surabaya. Institut Teknologi Sepuluh Nopember
  30. Paroka, D. (2018). Karakteristik Geometri dan Pengaruhnya Terhadap Stabilitas Kapal Ferry Ro-Ro Indonesia. KAPAL, 15(1),1-8
  31. Rawson KJ, Tupper EC. (1983). Basic Ship Theory. Ed. 3. London: Butterworth-Heinemann
  32. Sachri, A. (2002). Estetika, Makna, Simbol dan Daya. Bandung: ITB
  33. Santoso, I. G. M., Sudjono, J. J. (1983). Teori Bangunan Kapal. Jakarta: Departemen Pendidikan dan Kebudayaan Direktorat Pendidikan Menengah Kejuruan,
  34. Utomo, B. (2010). Pengaruh Ukuran Utama Kapal Terhadap Displacement Kapal. Teknik. 31(1): 84–89
  35. Vassalos, D. (2004). Risk-based Design: From Philosophy to Implementation. The 2nd International Maritime Conference on Design for Safety. Sakai, Jepang
  36. Wakidjo, P. (1972). Stabilitas Kapal Jilid II. Penuntun dalam Menyelesaikan Masalah. Yogyakarta
  37. Wang, J. A., Pillay, Y. S., Kwon, A. D., Wall, Loughran CG. (2005). An Analysis of Fishing Vessel Accidents. Accident Analysis & Prevention. 37(6): 1019-1024

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