Design and Construction of Line Hauler Tuna Handline
Abstract
Line haulers designed to use a bicycle pedal work system, for use on boats weighing ≤2 GT. This study used an experimental method, with the aim of facilitating the fishing process. Parameters observed were gear ratio, cadence RPM, average speed of reel rotation (speed) and length of fishing line reeled (development). The trials were carried out without load and with load, the no-load trial used RPM 60, 1 minute time, with different gear ratios resulted in different time and fishing line length, the largest gear ratio was 1.69 resulting in a speed of 12.5 km/hour with development 100.43 m, the smallest gear ratio is 0.65 resulting in a speed of 5.2km/jam with a development of 38.40 m. Test loads of 5 kg, 10 kg and 15 kg using different gear ratios, for a load of 5 kg with RPM 60 which is more efficient and effective using a gear ratio of 1.16, speed 8.5 km/hour with a fishing line time of 12.16 minutes, load 10 kg with RPM 60 using a gear ratio of 0.79, speed of 6.1 km/hour with a fishing line pulling time of 16.39 minutes and a load of 15 kg with an RPM of 30, using a gear ratio of 0.65, speed of 3.1 km/hour with a fishing line pulling time of 32.26 minutes. With the line hauler tool, fishermen can easily carry out tuna fishing operations
References
Dwinanta & Wiyono. (2014). Alat Bantu Mesin Penarik Tali Pancing Elektrik. Balai Besar Penangkapan Ikan.
Foley et al. (1982). In The Origin of Gearing, History of Technology. Production Machinery.
Fotheringham, W. (2015). Cyclopedia, It’s All About The Bike (Reprint). Chicago Reviews Press.
Fyson, J. (1985). Design of Small Fishing Vessels. FAO-UN Fishing News Books Ltd.
Gunanto & Pramono. (2019). Dasar Perancangan Teknik Mesin (Maya (ed.); Revisi 201). ANDI.
Hargiyatno et al. (2020). Analisis Teknis Mini Line Hauler Yang Diuji-Coba Pada Kapal Pancing Ulur Tuna Berbasis di Wilayah Penangkapan Ikan Prigi. 175–182.
Murtado, H., & Aditya, S. (2019). Pemasangan Line Hauler Pada Kapal KM Blue Fin 01. 17, 57–60. http://ejournal-balitbang.kkp.go.id/index.php/btl/article/view/8675/6596
Noija, D. (2014). Mekanisasi Pancing Ulur Untuk Meningkatkan Efektivitas dan Efisiensi Penangkapan Ikan Demersal di Perairan Pulau Ambon-Provinsi Maluku. Institut Petanian Bogor.
Payatna & I Gusti Agung Ngurah Trisna Jayantika, I. P. A. A. (2018). Panduan Penelitian Eksperimen Beserta Analisis Statistik Beserta SPSS (I. Fitria (ed.); Cetakan Pe). CV. BUDI UTAMA. http://repo.mahadewa.ac.id/id/eprint/1796/1/FULLBOOK.pdf
Riyanto et al. (2018). Alat Bantu Penarik Rawai Menggunakan Sistem Rantai. 16, 99–102.
Sudirman. (2013). Mengenal Alat dan Metode Penangkapan Ikan (Sudirman (ed.)). PT. Rineka Cipta.
Wibowo, B. (2017). Desain Mini Line Hauler Dengan Pendekatan Bio-Engineering Untuk Perikanan Pancing Ulur Tuna. Institut Pertanian Bogor.
Wudianto, W., Widodo, A. A., Satria, F., & Mahiswara, M. (2019). Kajian Pengelolaan Rumpon Laut Dalam Sebagai Alat Bantu Penangkapan Tuna di Perairan Indonesia. Jurnal Kebijakan Perikanan Indonesia, 11(1), 23. https://doi.org/10.15578/jkpi.1.1.2019.23-37
Jurnal ini menyediakan open access yang pada prinsipnya membuat riset tersedia secara gratis untuk publik dan akan mensupport pertukaran pengetahuan global terbesar.