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Oceanographic Factors as the Indicators for Shipyard Industry Development in Kutaraja Fishing Port: A Preliminary Study

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Shipyard development in Kutaraja Fishing Port is important to improve the port performance. The studies related to shipyards are mainly focused on their productivity, facility layout, production capacity, and management and planning. Meanwhile, there are still limited studies related to the influence of oceanographic factors on shipyard development. This research aimed to identify the impact of oceanographic factors on shipyard industry development in Kutaraja fishing port. The research was conducted from December 2020 to March 2021. The data analyzed in this study were tide, wind, current, wave, bathymetry, and sediment composition. The tide, wind, current, and wave data were collected for the last three years from Meteorology, Climatology, and Geophysical Agency. The current moves from two directions, from northeast and northwest, towards the coastal areas around the eastern part of Kutaraja fishing port, closed to the breakwater. The current in the eastern part moves faster than in the western part, and the western part of the sampling area mostly has shallow waters. The highest tide occurs at 12:00 with a water height of -0.3855 meters, and the lowest tide was at 19:00 with a water height of -1.0485 meters. Fine sand dominated the sediment in the sampling area. The result indicates that oceanographic factors are essential to be incorporated as one of the indicators for shipyard development.
Słowa kluczowe
Rocznik
Strony
237--245
Opis fizyczny
Bibliogr. 25 poz., rys., tab.
Twórcy
autor
  • Doctoral Program, School of Engineering, Universitas Syiah Kuala (USK), Jl. Syech Abdurrauf No. 7, Darussalam, Banda Aceh, 23111, Indonesia
  • Department of Capture Fisheries, Marine and Fisheries Faculty, Universitas Syiah Kuala (USK), Jl. Syech Abdurrauf No. 7, Darussalam, Banda Aceh, 23111, Indonesia
  • Doctoral Program, School of Engineering, Universitas Syiah Kuala (USK), Jl. Syech Abdurrauf No. 7, Darussalam, Banda Aceh, 23111, Indonesia
  • Department of Physics, Mathematics and Natural Science Faculty, Universitas Syiah Kuala (USK), Jl. Syech Abdurrauf No. 7, Darussalam, Banda Aceh, 23111, Indonesia
autor
  • Doctoral Program, School of Engineering, Universitas Syiah Kuala (USK), Jl. Syech Abdurrauf No. 7, Darussalam, Banda Aceh, 23111, Indonesia
  • Mechanical Engineering Department, Faculty of Engineering, Universitas Syiah Kuala (USK), Jl. Syeh Abdurrauf No. 7, Darussalam, Banda Aceh, 23111, Indonesia
autor
  • Doctoral Program, School of Engineering, Universitas Syiah Kuala (USK), Jl. Syech Abdurrauf No. 7, Darussalam, Banda Aceh, 23111, Indonesia
  • Mechanical Engineering Department, Faculty of Engineering, Universitas Syiah Kuala (USK), Jl. Syeh Abdurrauf No. 7, Darussalam, Banda Aceh, 23111, Indonesia
Bibliografia
  • 1. Al Amri F.S. 2018. Study of technologies and processes in shipbuilding industry. International Journal of Multidisciplinary and Current Research, 6, 101–102.
  • 2. Azevedo J.W.D.J., de Casto A.C.L., dos Santos M.F.V. 2016. Siltation rate and main anthropic impact on sedimentation of the sao luis tidal inlet state of maranho, Brazil. Brazilian journal of oseanography, 64(1), 9–18.
  • 3. Chao S.L. 2020. Comparing The Productivity Of Major Shipyards In China, South Korea, And Japan An Application Of A Metafrontier Framework. Maritime Business Review, 5(2), 193–194.
  • 4. Golabi M.H., Manibusan S., Righetti T., Okano D., Iyekar C. 2018. Using vetiver grass technology for mittigating sediment loads in the talakhaya wetershed ateas in rota, CNMI. International soil and water conservation research, 6, 194–201.
  • 5. Jalil Z., Rahwanto A., Mulana F., Handoko E. 2019. Synthesis of nano-hematite (Fe2O3) extracted from natural iron ore prepared by mechanical alloying method, AIP Conference Proceedings, 2151, 020041.
  • 6. Katu U., Zubair A., Sahbuddin A.K. 2020. Tidal sea water measurement monitoring system. International journal of civil engineering anf technology (IJCIET), 11(2), 79–87.
  • 7. Kholis M.N., Ikhsan S.A., Wulandari U. 2020. Aktivitas dan jaringan kerja pembuatan kapal perikanan 5 gt di galangan kapal ud. Oliong kabupaten rokan hilir provinsi riau. Aurelia journal, 1(2), 61–70.
  • 8. Lestari F.R., Octavian A., Harsono G. 2019. Sistem informasi geografis (sig) untuk rancangan dock pt pal sebagai obyek vital nasional dalam rangka pengembangan wilayah industri pertahanan di teluk semangka provinsi lampung. Julnal teknologi penginderaan, 1(2), 127–150.
  • 9. Li J., Sun M., Han D., Wu X., Yang B., Mao X., Zhou Q. 2018. A Governance Platform for MultiProject Management in Shipyard. Computers and Engineering, 120, 179–180.
  • 10. Muhammad M., Fatmaliana A., Jalil Z. 2019. Study of hematite mineral (Fe2O3) extracted from natural iron ore prepared by co-precipitation method, IOP Conf. Series: Earth and Environmental Science, 348, 012135.
  • 11. Maulinda, Zein I., Jalil Z. 2019. Identification of Magnetite Material (Fe3O4) Based on Natural Materials as Catalyst for Industrial Raw Material Application, IOP Conf. Series: Journal of Physics: Conf. Series, 1232, 012054.
  • 12. Poulain P., Marrie, Centurioni L. 2015. Direct measurements of world ocean tidal current with surface drifters. Journal of geophysical research: oceans, 120(10), 6986–7003.
  • 13. Pratama P., Fadillah A. 2019. Study on development of shipyard type for supporting pioneer ship in Indonesia. The First Maluku International Conference on Marine Science and Technology, 339, 5–8.
  • 14. Rahmah A., Rizayani M., Chalilluddin. 2018. Pengaruh kualitas Pelabuhan Perikanan Samudera Lampulo terhadap kelancaran operasional penangkapan ikan. Jurnal Depik. ISSN: 2502–6194.
  • 15. Rahman A. & Mahreda E.S. 2019. Marketing channels of marine fish in Banjarmasin fishing port, Indonesia. International Journal of Fisheries and Aquatic Research, 4(3), 15–22.
  • 16. Rizwan T., Kandi O., Jalil Z., Setiawan I., Maulana R., Ranti D.M.V., Chaliluddin M.A. 2021. The analysis of clean water need for fishing activities in Kutaraja Fishing Port, Aceh Indonesia. Australian Journal of Maritime & Ocean Affairs, 13(1), 1–11.
  • 17. Saputra B., Mulyanto I.P., Amiruddin W. 2017. Studi Perancangan Galangan Kapal untuk Pembangunan Kapal Baru dan Perbaikan di Area Pelabuhan Pekalongan. Jurnal Teknik Perkapalan, 5(2), 353–366.
  • 18. ShaSha Zheng W., PeiFang W., Chao H. Jun. 2015. Sediment resuspension under action of wind i Taihu Lake, China. Inernational Journal of Sediment Research, 30(1), 48–62.
  • 19. Sharaan M., Negm A., Iskander M., Nadaoka K. 2017. Questionnaire-based assessment of Mediterranean fishing ports, Nile Delta, Egypt. Marine Policy, 81, 98–108.
  • 20. Soetardjo M., Wardhana E.M., Bisri A. 2018. Perencanaan Awal Tata Letak Galangan Kapal Di Daerah Kawasan Lahan Terbuka. Applied Technology and Computing Science Journal, 1(1), 54–58.
  • 21. Soh M.C., Shamsuddin S.M., Hasan S. 2019. A New Framework for Dynamical Resources Planning System in Shipbuilding Industri. Int. J. Advance Soft Compu, 11(1), 146–148.
  • 22. Thiebeut M., Santchev A. 2017. Asymmetry of tidal current off the W. Brittany coast and assessment of tidal energy resource around the Ushant island. Renewable Energy, (105) 2017, 735–747.
  • 23. Widiyastuti A.E., Aprianingsih A. 2019. Proposed Marketing Strategy of PT. Pelabuhan Indonesia III (Persero) Property the Cas of Tegal Port. Journal of International Conference Proceedings, 5.
  • 24. Yasin A.M., Sukiyah E., Isnaniwardhani V. 2016. Grain size analysis of quartenay sediment from kendari basin, Indonesia. International journal of science and research, 5(11), 1748–1751.
  • 25. Zaman M.B., Siswantoro N., Nandiansyah R.R. 2019. Risk Assessment In Ship Repair Scheduling. Intern.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-be10fe53-d65b-4e80-b573-1225098f9856
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