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Rancang Bangun Miniatur Kapal Bentuk V Bottom sebagai Simulator Inclining Test

Program Studi Mekanisasi Perikanan, Politeknik Kelautan dan Perikanan Sorong, Jl Kapitan Patimura, Kelurahan Suprau, Kecamatan Maldum Mes, Kota Sorong, Indonesia 98411 , Indonesia

Open Access Copyright 2023 Jurnal Pengelolaan Laboratorium Pendidikan

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Abstract

Literature studies on the application of the inclining test, in accordance with BKI (Indonesian Classification Bureau) standards, have been widely applied to large ships. But in practice in the field, large ship media is difficult to obtain. In supporting ship building practicum and ship stability, especially in inclining test practicum, a miniature ship is really needed to help students understand ship building, ship stability, and understand the inclining test procedure which is a benchmark for ship stability. So in this study, focusing on ship design, for fabrication of ship buildings and the addition of lubricating media, as well as calculation tables as a guide in carrying out building practicum and ship stability. In the fabrication of miniatures that have been produced, the stability point values are KG = 3.54 cm, KM = 20.17 cm, KB = 3.41 cm, GM = 16.63 cm, and BM = 16.73 cm where the results are has been obtained in accordance with the theory of stability where the position of each point is in accordance with the top order of K, G. B. and M.

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Keywords: Inclining test; Bangunan Kapal; Stabilitas Kapal; V Bottom

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  1. Arif, A., & Mukti, Y. (2017). Rancang Bangun Website Sekolah Menengah Pertama (Smp) Negeri 8 Kota Pagar Alam. Jurnal Ilmiah Betrik, 08(03), 156–166
  2. Azhar, A., & Kristiyono, T. A. (2020). Stabilitas Kapal Kecil. Malang: Ahlimedia Press
  3. Biro Klasifikasi Indonesia. (2015). Petunjuk Pengujian Kemiringan edisi 2015 Biro Klasifikasi Indonesia. In Petunjuk Pengujian Kemiringan Edisi 2015 Biro Klasifikasi Indonesia: Vol. C (2015th ed., p. 18). Biro Klasifikasi Indonesia
  4. Chandra Kusuma. (2021). Rancang Bangun Model ALat Simulasi Inclining Test. In Repository Politeknik Negeri Bengkalis
  5. Gunawan, W. (2019). Rancang Bangun Ulang Alat Uji Stabilitas Kapal. Depok: Universitas Indonesia
  6. Hasbullah, M., Baso, S., Bochary, L., -, R., Sitepu, G., Asri, S., Djafar, W., Anggriani, A. D. E., Ardianti, A., & Asis, M. A. (2021). Pelatihan Pengujian Inclining (Inclining Test) Kapal Kayu dengan Adanya Penambahan Panjang Kapal dan Berlunas Baja Bagi Pengrajin Kapal di Kabupaten Takalar. JURNAL TEPAT : Teknologi Terapan Untuk Pengabdian Masyarakat, 4(2), 271–282. https://eng.unhas.ac.id/tepat/index.php/Jurnal_Tepat/article/view/217
  7. Kementerian Pendidikan dan Kebudayaan Republik Indonesia. (2015). Bangunan dan Stabilitas Kapal Perikanan I
  8. Rubianto. (2013). Stabilitas & Bangunan Kapal
  9. Saputra, H., Yuniarsih, N., & Rianto, D. (2017). Analisa pengaruh Beban Terhadap Stabilitas Statis Kapal Patroli 28 Meter Untuk Pengawasan Perairan di Kepulauan Riau. Jurnal Integrasi, 9(2), 149. https://doi.org/10.30871/ji.v9i2.519
  10. Satoto, S. W. (2019). Perancangan Lambung Kapal Tanpa Awak Sebagai Alat Bantu Survei Di Kepulauan Riau. Kapal: Jurnal Ilmu Pengetahuan Dan Teknologi Kelautan, 16(1), 9–15. https://doi.org/10.14710/kapal.v16i1.21917
  11. Siti Rahayu Ningsih. (2018). Analisa Stabilitas Berdasarkan Data Teoretis Dan Hasil Inclining Test Untuk Stability Analysis Based on Theoretical Data and Inclining Test Result for Km

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