Performance Analysis the Impact of Solar Panel Placement on the Deck House Fishing Vessel (20 GT) on Fishing Operation

Shanty Manullang, Rizky Irvana, Y. Arya Dewanto, Amelia B.A. Wetik, Mercy Patanda

Abstract


High stability is imperative, safeguarding against the unpredictable nature of the marine environment and promoting a secure working platform for crew members to do fishing operation. The aim of this study is to analyze the effect of laying solar panels on the deckhouse of small fishing vessels 20 GT. The additional load above which causes weight gain and will affect the ship's center of gravity is became the first effect of Fishing vessel stability. The second effect is on how the fishing vessel performs when there is a solar panel on the vessel. The data were collected by measuring the stability according to A.N Kyrylo’s method with standard checks according to the IMO (International Marine Organization). Code on Intact stability calculated the ship motion by using the STRIP method and using the JONSWAP method to measuring the wave characteristics with the help of Maxsurf software. The results of this research show that the installment of solar panels above the deckhouse does not really affect the stability, where the results were meets the IMO standard criteria. The successful fishing operation of the vessels studied will only have a good performance at 1.5 meters, according to the seakeeping analysis.


Keywords


Fishing Vessel, Solar Panel, Stability, Ship Motion

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References


. B. Sudjasta, S. Prayitno and M. R. Hatuwe. "Utilization of Solar Energy on 10 GT Fishing Vessels as Alternative Electricity Facilities at PPI Cituis Tangerang Regency". E3S web of conferences. vol. 328. pp. 09001-09001. Jan. 2021. 10.1051/e3sconf/202132809001.

. [2] B. P. M. Jaya, A. Sitamala and D. Danial. "State Exclusivity of Fisheries Resources on Exclusive Economic Zone in Efforts to Support the Fisheries Availability as a Means of Increasing Food Security for the State". Advances in biological sciences research. Jan. 2021. 10.2991/absr.k.210304.039.

. S. Sunaryo, A. Syahrihaddin and P. S. Imfianto. "Solar Energy for a Traditional Coastal Fishing Platform". Journal of Marine Science and Application. vol. 18. no. 3. pp. 366-371. May. 2019. 10.1007/s11804-019-00087-5.

. S. Chakraborty, S. Ullah and M. A. Razzak, "Quantifying solar potential on roof surface area of fishing trawlers in Chittagong Region in Bangladesh".

. Fyson, J. 1985. Design of Small Fishing Vessels. England: Fishing News Book. Great Britain: B.H Newnes.

. E. W. Erliani, M. Marto and E. Tanjaya. "Fishing Equipment Technical Efficiency for Fisheries Production in Banda Naira". IOP Conference Series: Earth and Environmental Science. vol. 517. no. 1. pp. 012006-012006. Jun. 2020. 10.1088/1755-1315/517/1/012006.

. Nomura, M and T. Yamazaki. 1977. Fishing Technique (1). Tokyo: Japan International Corporation Agency (JICA).

. R. Irvana, A. Fadillah, S. Manullang and F. Fridolini. "Analysis of Stability, Resistance, and Seakeeping Accord to Dimension and Form of Fishing Vessel 10, 20, 30 GT". INSIST (International Series on Integrated Science and Technology). vol. 4. no. 1. pp. 199-199. Apr. 2019. 10.23960/ins.v4i1.199.

. L. S. Caamaño, M. M. González and V. D. Casás. "Improving the Safety of Fishing Vessels Through Roll Motion Analysis". Jun. 2018. 10.1115/omae2018-78572.

. K. Lapa. "Estimation of stability for a fishing vessel and some considerations". IOP Conference Series: Materials Science and Engineering. vol. 400. pp. 082014-082014. Sep. 2018. 10.1088/1757-899x/400/8/082014.

. M. Tello, S. R. E. Silva and C. G. Soares. "Seakeeping performance of fishing vessels in irregular waves". Ocean Engineering. vol. 38. no. 5-6. pp. 763-773. Apr. 2011. 10.1016/j.oceaneng.2010.12.020.

. C. Pérez-Labajos. "Fishing safety policy and research". Marine Policy. vol. 32. no. 1. pp. 40-45. Jan. 2008. 10.1016/j.marpol.2007.04.002.

. E. McGuinness and I. B. Utne. "A systems engineering approach to implementation of safety management systems in the Norwegian fishing fleet". Reliability Engineering & System Safety. vol. 121. pp. 221-239. Jan. 2014. 10.1016/j.ress.2013.08.002.

. "Highest Efficiency Rigid Marine Solar Panels For Your Boat in 2023."

. M. J. Windle, B. Neis, S. Bornstein, M. Binkley and P. Navarro. "Fishing occupational health and safety: A comparison of regulatory regimes and safety outcomes in six countries". Marine Policy. vol. 32. no. 4. pp. 701-710. Jul. 2008. 10.1016/j.marpol.2007.12.003.

. R. Vettor, J. Szłapczyńska, R. Szłapczynśki, W. Tycholiz and C. G. Soares, "Towards Improving Optimised Ship Weather Routing".

. R. Irvana, A. Fadillah and S. Manullang. "Risk Assessment Shipping Accident of Fishing Vessel". IOP Conference Series: Earth and Environmental Science. vol. 557. no. 1. pp. 012028-012028. Aug. 2020. 10.1088/1755-1315/557/1/012028.

. A. A. Salem and I. S. Seddiek. "Techno-Economic Approach to Solar Energy Systems Onboard Marine Vehicles". Polish Maritime Research. vol. 23. no. 3. pp. 64-71. Sep. 2016. 10.1515/pomr-2016-0033.

. Jamal, A. Sulisetyono and W. D. Aryawan, "Review of the seakeeping criteria for the study of a passenger ship criteria in Indonesian water".

. M. Gutsch, S. Steen and F. Sprenger, "Operability robustness index as seakeeping performance criterion for offshore vessels".

. M. Manfredi and L. Tirone, "Application of the Model Based Systems Engineering Approach for Modern Warship Design".

. K. Suzuki and T. Takagi, "Dynamics of Boat Seine Fishing Using a Net Geometry Simulator".

. Y. Shi, S. Yang, X. Huang, C. Chengqi and Z. Cheng. "Performance optimization analysis of the catamaran unmanned vehicle based on improved particle swarm optimization algorithm". International Journal of Engineering and Applied Sciences. vol. 6. no. 7. Jul. 2019. 10.31873/ijeas.6.7.2019.18.

. Supriono, D. Fanani and A. Husaini, "Local Tourism Diversification Through Cultural Heritage".

. Kiryanto, M. Ridwan, B. A. Adietya, D. Chrismianto and A. R. Ayuningtiyas. "Design 30 GT Catamaran Fishing Boat with Variations of Hull Type and Inter-Demihull Length for Minimum Resistance". International journal of innovative technology and exploring engineering. vol. 9. no. 3. pp. 1126-1133. Jan. 2020. 10.35940/ijitee.c8147.019320.

. K. Lapa. "Estimation of stability for a fishing vessel and some considerations". IOP Conference Series: Materials Science and Engineering. vol. 400. pp. 082014-082014. Sep. 2018. 10.1088/1757-899x/400/8/082014.

. R. M. Wirakusuma. "Water Based Tourism and Recreation Challenges in West Java Province". IOP Conference Series: Earth and Environmental Science. vol. 145. pp. 012066-012066. Apr. 2018. 10.1088/1755-1315/145/1/012066.

. Newman, J. N. (1978). The theory of ship motions. Adv. Appl. Mech. 18, pp. 222–283

. Hasselmann, K.,1996. Feynman diagrams and interaction rules of wava-wave scattering processes. Rev. Geophysys. Space. 4. 1-32.

. Tello M, e Silva SR, Soares CG. 2010. Seakeeping Performance of Fishing Vessels in Irregular Waves. Portugal: Centre for Marine Technology and Engi-neering (CENTEC), Technical University of Lis- bon, Instituto Superior Te´cnico, Av. Ro- visco Pais. 38(5): 763-773.

. S. Manullang, R. Irvana, A. Buwono, and M. Patanda, “Analisa Pengaruh Peletakan Panel Surya di Atas Deck House Kapal Ikan 30 GT Terhadap Keselamatan Operasional Penangkapan Ikan,” JURNAL ILMU DAN TEKNOLOGI PERIKANAN TANGKAP, vol. 8, no. 1, pp. 39–46, Jun. 2023, doi: 10.35800/jitpt.8.1.2023.46364.




DOI: http://dx.doi.org/10.12962/j25481479.v9i2.20394

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