References
- Mahajan N. Seasons of sail : The monsoon, kinship, and labor in the dhow trade. Reimagining Indian Ocean Worlds 2020: 73–86. https://doi.org/10.4324/9780429325915-6.
- Igloliorte MI, Burnham C. The form of the kayak came from its function as a hunting boat. The Capilano Review 2020; 3 :85–96.
- Irwin G, Flay RGJ, Dudley L, Johns D. The sailing performance of ancient Polynesian canoes and the early settlement of East Polynesia. Archaeology in Oceania 2023; 58: 74–90. https://doi.org/10.1002/ARCO.5277.
- Planke T, Øya SE, Heide E. The Third Gokstad Boat: The Documentation and Context of a Viking Age Boat. International Journal of Nautical Archaeology 2021; 50: 272–92. https://doi.org/10.1080/10572414.2021.2014720.
- Olaluwoye O, Ba M, Brochier T, Kammegne C, Bah A. Deep Learning-Based Enumeration of Pirogues Using Google Earth Images: A Case Study of Artisanal Fishing Landing Sites in Senegal. Lecture Notes in Networks and Systems 2024; 1068 LNNS: 23–46. https://doi.org/10.1007/978-3-031-66336-9_3.
- Afda’u MF, Sulaiman S, Nasuka N. The Tradition of Pacu on the Canoe as a Traditional Sports Culture for the People in Kuantan Singingi Regency, Riau Province. Journal of Physical Education and Sports 2022; 11: 171–80. https://doi.org/10.15294/JPES.V11I2.52437.
- Andesta I, Jocom H, Karuniawati EAD. Modelling of Sustainable Marine Resources: Case Study Sampan Tribe in Riau Island, Indonesia. E3S Web of Conferences 2021; 324: 03003. https://doi.org/10.1051/E3SCONF/202132403003.
- Imron M, Haq RSQ, Iskandar BH. Local wisdom of “Jukung” boat design in Cilacap District, Central Java, Indonesia. Aquaculture, Aquarium, Conservation & Legislation 2020; 13: 3397–406.
- Lacsina LSP. Examining pre-colonial Philippine boatbuilding: An archaeological study of the Butuan Boats and the use of edge-joined planking in local and regional construction techniques. Timon: The Philippine maritime heritage forum 2020; Vol. 1: 92–107.
- Wahab MRA, Ramli Z. The Malay Traditional Boat: Defending Malay Heritage Objects in Kelantan, East Coast of the Malaysian Peninsula. Journal of Maritime Archaeology 2020; 15: 57–68. https://doi.org/10.1007/S11457-019-09247-8/METRICS.
- Prabowo AR, Martono E, Muttaqie T, Tuswan T, Bae DM. Effect of hull design variations on the resistance profile and wave pattern: a case study of the patrol boat vessel. Journal of Engineering Science and Technology 2022; 17: 106–26.
- Çamll SB, Neşer G, Sözen A. Environmental Marine Degradation of PLA/Wood Composite as an Alternative Sustainable Boat Building Material. Polish Maritime Research 2024; 31: 127–34. https://doi.org/10.2478/POMR-2024-0013.
- Semedi P, Schneider K. Fishers’ responses to the Danish seiner ban and the history of fisheries governance on the Java north coast. Maritime Studies 2021; 20: 43–62. https://doi.org/10.1007/S40152-020-00202-1/METRICS.
- Akhmad A, Amir A, Asdi A, Ali MY, Anwar A. The Process of Making a Pinisi Boat in Bantobahari District, Bulukumba Regency, Indonesia. European Journal of Engineering and Technology Research 2022; 7: 70–5. https://doi.org/10.24018/EJENG.2022.7.5.2837.
- Juhl JØ, de Zee M, Klitgaard K. A model of racing kayak surge motion: a numerical approach with realistic oscillating propulsion forces 2024. https://doi.org/10.1177/17543371241281016.
- Kamaruddin N, Rosli H. Preserving Malay Heritage: Basic Understanding of Traditional Boat Making in Terengganu. ESTEEM Journal of Social Sciences and Humanities 2023; 7.
- Rubino F, Nisticò A, Tucci F, Carlone P. Marine Application of Fibre Reinforced Composites: A Review. Journal of Marine Science and Engineering 2020; Vol 8: 26. https://doi.org/10.3390/JMSE8010026.
- Nurazzi NM, Asyraf MRM, Athiyah SF, Shazleen SS, Rafiqah SA, Harussani MM, Kamarudin SH, Razman MR, Rahmah M, Zainudin ES, Ilyas RA, Aisyah HA, Norrrahim MNF, Abdullah N, Sapuan SM, Khalina A.. A review of mechanical performance of hybrid natural fibre polymer composites for structural applications. Polymers (Basel) 2021; 13. https://doi.org/10.3390/polym13132170.
- Delzendehrooy F, Akhavan-Safar A, Barbosa AQ, Beygi R, Cardoso D, Carbas RJC, Marques EAS, da Silva LFM. A comprehensive review of structural joining techniques in the marine industry. Compos Struct 2022; 289: 115490. https://doi.org/10.1016/J.COMPSTRUCT.2022.115490.
- Zhu Z, Li X, Chen Q, Cai Y, Xiong Y. Simulations and tests of composite marine structures under low-velocity impact. Polish Maritime Research 2021; 28: 59–71. https://doi.org/10.2478/pomr-2021-0006.
- Habibie S, Suhendra N, Setiawan BA, Hamzah M, Aisah N, Fitriani DA, Tasomara R, Anggaravidya M. Prospect of ramie fibre development in Indonesia and manufacturing of ramie fibre textile-based composites for industrial needs, an overview. Int J Compos Mater 2021; 11: 43–53.
- Karimah A, Ridho MR, Munawar SS, Adi DS, Ismadi I, Damayanti R, Subiyanto B, Fatriasari W, Fudholi A. A review on natural fibres for development of eco-friendly bio-composite: characteristics, and utilizations. Journal of Materials Research and Technology 2021; 13: 2442–58. https://doi.org/10.1016/J.JMRT.2021.06.014.
- Baley C, Davies P, Troalen W, Chamley A, Dinham-Price I, Marchandise A, Keryvin V. Sustainable polymer composite marine structures: Developments and challenges. Prog Mater Sci 2024; 145: 101307. https://doi.org/10.1016/J.PMATSCI.2024.101307.
- Baykal HH, Neser G. Synergistic Performance Degradation of Marine Structural Elements: Case Study of Polymer-Based Composite and Steel Hybrid Double Lap Joints. Polish Maritime Research 2023; 30: 111–8. https://doi.org/10.2478/pomr-2023-0044.
- Kefal A, Tabrizi IE, Yildiz M, Tessler A. A smoothed iFEM approach for efficient shape-sensing applications: Numerical and experimental validation on composite structures. Mech Syst Signal Process 2021; 152: 107486. https://doi.org/10.1016/J.YMSSP.2020.107486.
- Xu W, Chen J, Cui X, Wang D, Pu Y. Low-velocity impact analysis and multi-objective optimisation of hybrid carbon/basalt fibre reinforced composite laminate. Compos Struct 2024; 343: 118305. https://doi.org/10.1016/J.COMPSTRUCT.2024.118305.
- Al Ali A, Arhore E, Ghasemnejad H, Yasaee M. Experimental and numerical investigation of multi-layered honeycomb sandwich composites for impact mechanics applications. Results in Engineering 2024; 21: 101817. https://doi.org/10.1016/J.RINENG.2024.101817.
- Kumar V, Yokozeki T, Karch C, Hassen AA, Hershey CJ, Kim S, Lindahl JM, Barnes A, Bandari YK, Kunc V. Factors affecting direct lightning strike damage to fibre reinforced composites: A review. Compos B Eng 2020; 183: 107688. https://doi.org/10.1016/J.COMPOSITESB.2019.107688.
- Mahesh V, Joladarashi S, Kulkarni SM. A comprehensive review on material selection for polymer matrix composites subjected to impact load. Defence Technology 2021; 17: 257–77. https://doi.org/10.1016/J.DT.2020.04.002.
- Iqbal M. Dynamic Performance of Small Fishing Vessels in Waves with Varied Loading Conditions. University of Strathclyde Glasgow.2024.
- Reiner J, Vaziri R, Zobeiry N. Machine learning assisted characterisation and simulation of compressive damage in composite laminates. Compos Struct 2021; 273: 114290. https://doi.org/10.1016/J.COMPSTRUCT.2021.114290.
- AlMahri S, Santiago R, Lee DW, Ramos H, Alabdouli H, Alteneiji M, Guan Z, Cantwell W, Alves M. Evaluation of the dynamic response of triply periodic minimal surfaces subjected to high strain-rate compression. Addit Manuf 2021; 46: 102220. https://doi.org/10.1016/J.ADDMA.2021.102220.
- Ozdil F, Carlsson LA. Beam analysis of angle-ply laminate DCB specimens. Compos Sci Technol 1999; 59: 305–15. https://doi.org/10.1016/S0266-3538(98)00069-4.
- An N, Jia Q, Jin H, Ma X, Zhou J. Multiscale modelling of viscoelastic behaviour of unidirectional composite laminates and deployable structures. Mater Des 2022; 219: 110754. https://doi.org/10.1016/J.MATDES.2022.110754.
- Omairey SL, Dunning PD, Sriramula S. Development of an ABAQUS plugin tool for periodic RVE homogenisation. Eng Comput 2019; 35: 567–77. https://doi.org/10.1007/S00366-018-0616-4/TABLES/3.
- Qin J, Yin LJ, Hao YN, Zhong SL, Zhang DL, Bi K, Zhang YX, Zhao Y, Dang ZM. Flexible and Stretchable Capacitive Sensors with Different Microstructures. Advanced Materials 2021; 33: 2008267. https://doi.org/10.1002/ADMA.202008267.
- Maji A, Mahato PK. Development and applications of shear deformation theories for laminated composite plates: An overview. J Thermoplast Compos Mater. 2020; 35: 2576–619. https://doi.org/10.1177/0892705720930765.
- Islam MZ, Sarker ME, Rahman MM, Islam MR, Ahmed ATMF, Mahmud MS, Syduzzaman M. Green composites from natural fibres and biopolymers: A review on processing, properties, and applications. Journal of Reinforced Plastics and Composites 2022; 41: 526–57. https://doi.org/10.1177/07316844211058708/ASSET/IMAGES/LARGE/10.1177_07316844211058708-FIG16.JPEG.
- Abdulhameed AA, Al‐zuhairi AH, Al Zaidee SR, Hanoon AN, Al Zand AW, Hason MM, Abdulhameed HA. The Behaviour of Hybrid Fibre-Reinforced Concrete Elements: A New Stress-Strain Model Using an Evolutionary Approach. Applied Sciences 2022; Vol 12: 2245. https://doi.org/10.3390/APP12042245.
- Zhou G, Jeong W, Homer ER, Fullwood DT, Lee MG, Kim JH, Lim H, Zbib H, Wagoner RH. A predictive strain-gradient model with no undetermined constants or length scales. J Mech Phys Solids 2020; 145: 104178. https://doi.org/10.1016/J.JMPS.2020.104178.
- Siddiqui MAS, Rabbi MS, Dewanjee S. Low-velocity impact response of natural fibre reinforced composites: A comprehensive review on influential parameters. Composites Part C: Open Access 2023; 12: 100422. https://doi.org/10.1016/J.JCOMC.2023.100422.
- Stephen C, Shivamurthy B, Mohan M, Mourad AHI, Selvam R, Thimmappa BHS. A Low Velocity Impact Behaviour of Fabric Reinforced Polymer Composites – A Review. Engineered Science 2022; 18: 75–97. https://doi.org/10.30919/ES8D670.
- Ereiz S, Duvnjak I, Fernando Jiménez-Alonso J. Review of finite element model updating methods for structural applications. Structures 2022; 41: 684–723. https://doi.org/10.1016/J.ISTRUC.2022.05.041.
- Novak N, Borovinšek M, Al-Ketan O, Ren Z, Vesenjak M. Impact and blast resistance of uniform and graded sandwich panels with TPMS cellular structures. Compos Struct 2022; 300: 116174. https://doi.org/10.1016/J.COMPSTRUCT.2022.116174.
- Xiang XM, Lu G, You Z. Energy absorption of origami inspired structures and materials. Thin-Walled Structures 2020; 157: 107130. https://doi.org/10.1016/J.TWS.2020.107130.
- Chandgude S, Salunkhe S. In state of art: Mechanical behaviour of natural fibre-based hybrid polymeric composites for application of automobile components. Polym Compos 2021; 42: 2678–703. https://doi.org/10.1002/PC.26045.
- Masjedi PK, Weaver PM. Variable stiffness composite beams subject to non-uniformly distributed loads: An analytical solution. Compos Struct 2021; 256: 112975. https://doi.org/10.1016/J.COMPSTRUCT.2020.112975.
- Khieng TK, Debnath S, Ting E, Liang C, Anwar M, Pramanik A, Basak AK. A Review on Mechanical Properties of Natural Fibre Reinforced Polymer Composites under Various Strain Rates. Journal of Composites Science 2021; Vol. 5: 130. https://doi.org/10.3390/JCS5050130.
- Shahirul M, Jusoh M, Yahya Y, Ahmad H, Ahmad I. Strain rates effect of dynamic compression properties of E-glass / jute composite. Journal of Mechanical Engineering and Sciences 2020; 14: 7162–9. https://doi.org/10.15282/JMES.14.3.2020.17.0562.
- Prasad L, Kapri P, Patel RV, Yadav A, Winczek J. Physical and Mechanical Behaviour of Ramie and Glass Fibre Reinforced Epoxy Resin-Based Hybrid Composites. Journal of Natural Fibres 2023; 20. https://doi.org/10.1080/15440478.2023.22 34080.
- Patadia M, Sweat R. Modelling and analysis of multiscale hybrid composite structures for virtual design and performance-driven manufacturing: a review. Advances in Materials and Processing Technologies 2024. https://doi.org/10.1080/2374068X.2024.2373570.
- Suriani MJ, Rapi HZ, Ilyas RA, Petrů M, Sapuan SM. Delamination and Manufacturing Defects in Natural Fibre-Reinforced Hybrid Composite: A Review. Polymers 2021; Vol. 13: 1323. https://doi.org/10.3390/POLYM13081323.
- Akhil UV, Radhika N, Saleh B, Aravind Krishna S, Noble N, Rajeshkumar L. A comprehensive review on plant-based natural fibre reinforced polymer composites: Fabrication, properties, and applications. Polym Compos 2023; 44: 2598–633. https://doi.org/10.1002/PC.27274.
- Ramesh M, Rajeshkumar L, Balaji D. Mechanical and Dynamic Properties of Ramie Fibre-Reinforced Composites. Mechanical and Dynamic Properties of Biocomposites 2021: 275–91. https://doi.org/10.1002/9783527822331.CH15.
- Thiyagu C, Narendrakumar U. Mechanical and ballistic performance of ramie fibre-reinforced polymer composites: A review. Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science. 2024; 238: 7661–75. https://doi.org/10.1177/09544062241230224.