Design of an Optimum Battery Electric Fishing Vessel for Natuna Sea

Juniarko Prananda, Eddy Setyo Koenhardono, Rivaldi Clarence Tjoa

Abstract


Natuna Sea is one of the places in Indonesia, which has a high potency of fish up to one million ton per year. Fisherman in Indonesia relies too much on the fossil fuel, which has limited resources. The author wants to redesign the fishing vessel into the battery electric fishing vessel that can be recharge to reduce the use of fossil fuel and also to increasing the revenue of the fisherman. To minimize the capacity of the battery, the fishing activities concept is also change into centralized fishing activities which the activities is centralized in an open sea and has the offshore building as the fishing base that has power station to recharge the batteries and cold storage to collect all the fishes. As the object to redesign, it is used 10 GT purse seine fishing vessel. As the results of the calculation, it gets the total battery capacity 6000 Ah for operation 11 hours (4 hours travel time, 6.5 hours fishing activities, and 0.5 hours break). Based on the technical and economic analysis, it can be concluded that the battery electric fishing vessel has a better revenue and fewer expenses than the diesel-powered fishing vessel.

Keywords


Batteries; Electric Propulsion Systems; Fishing Vessels; Natuna Sea

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References


Pusat Data, Statistik, dan Infromasi. “Potensi Kelautan dan Perikanan Kabupaten Natuna.” Jakarta: Kementrian Kelautan dan Perikanan., 2016.

Pusat Pendidikan Kelautan dan Perikanan. “Penangkapan Ikan dengan Purse Seine”. Jakarta: Kementrian Kelautan dan Perikanan, 2012

Badan Pusat Statistik. “Statistik Ketenagakerjaan Kabupaten Natuna 2017”, 2017.

Kementrian Kelautan dan Perikanan RI. “Laporan Tahunan Kementrian Kelautan dan Perikanan Tahun 2016”. Jakarta: Kementrian Kelautan dan Perikanan, 2017.

Food and Agriculture Organization (FAO). “Fisherman's Workbook. Oxford: Fishing News Books’, 1990.

Gurning, S. (n.d.). Aplikasi Pendanaan Kapal. Surabaya.

T. T. T. Pham, O. Flaaten, dan T. K. A. Nguyen, “Remuneration Systems and Economic Performance: Theory and Vietnamese Small-scale Purse Seine Fisheries,” Mar. Resour. Econ., vol. 28, no. 1, hlm. 19–41, Jan 2013.

Rashid, M. H. Power Electronic Handbook”. 2001.

Crompton, T. R. “Battery Reference Book Third Edition. Oxford: Newnes”, 2000.

Cultu, M. “Batteries and Their Chemistry”, 2009.

In Y. Gogus, “Energy Storage Systems”. Paris: Eolss Publishers. 2009.

Shawyer, M., & Pizzali, A. F. “The Use of Ice on Small Fishing Vessel”. Rome: FAO., 2003.

M. B. Ndaliman dan U. Y. Suleiman, “An Economic Model for Break-even Analysis,” hlm. 6.

D. Deepak Sharma dan S. N. Singh, “Electrical load profile analysis and peak load assessment using clustering technique,” dalam 2014 IEEE PES General Meeting | Conference & Exposition, National Harbor, MD, USA, 2014, hlm. 1–5.

S. Xiong dan X. Li, “Empirical Analysis: The Parameter and Internal Rate Return (IRR) of Wind Power Factory in China,” dalam 2010 International Forum on Information Technology and Applications, Kunming, China, 2010, hlm. 377–380.




DOI: http://dx.doi.org/10.12962/j25481479.v4i2.3455

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P-ISSN: 2541-5972   

E-ISSN: 2548-1479

 

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