ANALISA TEGANGAN DAN DEFORMASI KAPAL PATROLI BERBAHAN MATERIAL HDPE AKIBAT PENGARUH BENDING MOMENT PADA PERAIRAN BERGELOMBANG

Authors

  • Alif Nur Rochmad PPNS

Keywords:

Patrol boat, HDPE, Bending moment, stress, Deformation, CFD Ansys Aqwa, FEM

References

DAFTAR PUSTAKA

B, H., & Suydam. (1952). HYDRODYNAMIC CHARACTERISTICS OF A LOW-DRAG, PLANING-TAIL FLYING-BOAT HULL (1st ed.). NACA.

Bertram, V. (n.d.). Practical Ship Hydrodynamics Second edition. www.bh.com/

Edward V. Lewis. (1988). Principles of Naval Architecture (Second Revision), Volume II. The Society of Naval Architects and marine Engineers.

Faltinsen, O. M. (Odd M. (2005). Hydrodynamics of high-speed marine vehicles. Cambridge University Press.

Finite element modeling and simulation with ANSYS Workbench ( PDFDrive ). (n.d.).

Fundamentals of Finite Element Analysis. (n.d.).

Kyaw, A. Y. (2024). View of Performance Evaluation of Hybrid Propulsion System on Fast Patrol Boat. Maritime Technology and Society.

Li, K., Zheng, D., Wang, Z., Yuan, Z., & Jiang, X. (2022). Numerical investigation of the interception performance of HDPE pontoon-type port safety barrier system under boat attacking. Ocean Engineering, 259. https://doi.org/10.1016/j.oceaneng.2022.111922

Lu, Y., Deng, S., Chen, Y., Xiao, T., Chen, J., Liu, F., Song, S., & Wu, B. (2023). Effects of wave parameters on load reduction performance for amphibious aircraft with V-hydrofoil. http://arxiv.org/abs/2311.06516

Manaf, I. A., Marsi, N., Genesan, V., Yusrianto, E., Shariff, H. H., Adnan, S. H., Awang, M., Ali, R., & Jamir, M. R. M. (2021). Compressive strength, sound absorption coefficient (SAC) and water absorption analysis of HDPE plastic waste reinforced polystyrene and Portland cement for lightweight concrete (LWC). Journal of Physics: Conference Series, 2051(1). https://doi.org/10.1088/1742-6596/2051/1/012043

Newman, J. N. (2017). Marine Hydrodynamics. The MIT Press.

Pratama, A. S., Prabowo, A. R., Tuswan, T., Adiputra, R., Muhayat, N., Cao, B., Hadi, S., & Yaningsih, I. (2023). FAST PATROL BOAT HULL DESIGN CONCEPTS ON HYDRODYNAMIC PERFORMANCES AND SURVIVABILITY EVALUATION. Journal of Applied Engineering Science, 21(2), 501–531. https://doi.org/10.5937/jaes0-40698

Rahmaji, T., Prabowo, A. R., Tuswan, T., Muttaqie, T., Muhayat, N., & Baek, S. J. (2022). Design of Fast Patrol Boat for Improving Resistance, Stability, and Seakeeping Performance. Designs, 6(6). https://doi.org/10.3390/designs6060105

Rawson, K. J., & Tupper, E. C. (2001). Basic ship theory. Butterworth-Heinemann.

Ridwan, M., Sulaiman, Sugeng, S., Sarwoko, & Nies, H. (2022). Mechanical Properties of Small Boat Construction from HDPE Blue Drum Scrap. TransNav, 16(3), 573–578. https://doi.org/10.12716/1001.16.03.20

Seculi, F., Espinach, F. X., Julián, F., Delgado-Aguilar, M., Mutjé, P., & Tarrés, Q. (2022). Evaluation of the Strength of the Interface for Abaca Fiber Reinforced Hdpe and Biope Composite Materials, and Its Influence over Tensile Properties. Polymers, 14(24). https://doi.org/10.3390/polym14245412

Seth, A., & Liem, R. P. (2019). Hydrofoil conceptual design and optimization framework for amphibious aircraft. AIAA Aviation 2019 Forum, 1–23. https://doi.org/10.2514/6.2019-3552

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Published

2025-11-27

How to Cite

Alif Nur Rochmad. (2025). ANALISA TEGANGAN DAN DEFORMASI KAPAL PATROLI BERBAHAN MATERIAL HDPE AKIBAT PENGARUH BENDING MOMENT PADA PERAIRAN BERGELOMBANG. Prosiding Seminar Nasional Terapan Riset Inovatif (SENTRINOV), 11(1), 155 - 168. Retrieved from https://proceeding.isas.or.id/index.php/sentrinov/article/view/1695