24Feb 2019

DINAMICS OF SUSTAINABLE WELFARE FISHERIES BASED ON TUNA FISH SENDANG BIRU, MALANG (DINAMIC SYSTEM APPROACH).

  • Postgraduate students at brawaijaya university.
  • Postgraduate lecturer at brawaijaya university.
  • Abstract
  • Keywords
  • References
  • Cite This Article as
  • Corresponding Author

This study was developed as a dynamics system model which is integrated tuna stocks, social economic and policy sub models. This model was developed based on historical data, than development into three development scenarios: with fish cact limitation, limitation by sustainable yield (MSY) limitation by maximum economic yield (MEY) and open access equilibrium (OAE). System dynamic modeling was conducted to analyze sustainable tuna and sustainable income of tuna fishermen based on various points of view to get the better management of sustainable tuna fisheries.


  1. Adam, Lukman.(2012). KebijakanPengembanganPerikananBerkelanjutan (Studikasus:KabupatenWakatobi,Provinsi Sulawesi Tenggara danKabupatenPulauMorotai, Provinsi Maluku Utara. JurnalPerikanandanKelautanVol.II.No.2 : 115-126.
  2. Barlas, Y.(1994). Model Validation in System Dynamics. International System Dynamics Conference.
  3. Charles, A.T., (1994). Towars Sustainable. The Fishery Experience. Ecologicalconomics, 11;2001-211.
  4. Charles, A.T., (2001). Sustainable Fishery Systems. Blackwell Science. London. 370p
  5. FAO, (2005)"Review of the state of world marine fisheries resources", Fisheries Technical Paper457, Rom
  6. FAO,(1995) CCRF, Code of CondusctforResponsibleFisheries, Rom
  7. Fatma R, (2015). Development of Sustainable Tuna Processing industri Using System Dynamics Journal Elsevier.Procedia manufacturing .107-114.
  8. Ginting, Ester.(2011) .Pengembangan Model SistemDinamikuntukmengkajiPengaruhPerubahanJumlahTangkapIkanLemuruterhadapIndustri Cold Storage di PelabuhanMuncar.InstitutTeknologiSepuluhNopember.
  9. Groebner F.D. et al (2011) Business Statistics. A Decision Making Approach. Eighth edition, 758.
  10. Joseph G Wheland (1994). Building the Fish Banks Model and Renewable Resource Depletion. Massachusetts Institute of Technology.
  11. Haq, MA. (2005) AnalisaPotensiKelautandenganMenggunakanPemodelanSistemDinamikgunaMendukungPemanfaatanSumberDayaKelautan yang berkelanjutan (StudiKasusKawasanIndustri maritime di PelabuhanTanjungTembagaProbolinggo) TesisS2 ,InstitutSepuluhNopember.
  12. Herry, Bambang. (2011). Model PrediksiIndikatorKeberlanjutanSumberdaya Agroindustri Teri NasiKeringmenggunakanSistemDinamik. Agrointek Volume 5, N0.2.
  13. Hermawan, D., Wahono, Handajani, (2001). AnalisisPotensiPerikanan di PerairanKabupaten Malang. BalitbangdaKabupaten Malang.
  14. (2003). PengembanganEkonomiNelayandanSistemSosialBudaya. Jakarta :Penerbit PT Gramedia.
  15. Kholil, Muhammad danDediDwiharyadi,? Model? SimulasiPengembanganIndustriPerikananDiKonaweaSelatanDenganPendekatanSistemDinamik, puslit\ARSIP ARTIKEL BULLETINt2005-2008
  16. Nixon,Alan,(1997)?WorldFisheries,ThecurrentCrisis? LybraryofParliament,Franc
  17. Quddrat, H.U. (2010). On The Validation Of Sytem Dynamics Type Simulation Models, 978-1-4244-59430
  18. Purwaningsih,Ratna, Sjarief W and Sri Gunani P (2011), The Effect of Marine Fish Biomass Stock Reduction to Fishers Revenue (A Case Study of SardinellaLemuru Fisheries on baliStrai), The Journal for Tecnology and Science, Vol.22, No.3.
  19. Ratna, Sjarief W and Sri Gunani P (2012), Pengembangan Model SimulasiKebijakanPengelolaanIkanBerkelanjutan, JurnalTeknikIndustri. Vol 14, No 1, 25-34.
  20. Rubianto, I., (2001). RencanaStrategis Pembangunan Kabupaten Malang. Makalah. PemerintahKabupaten Malang.
  21. Sastrawijaya, Mandianto.(2002). Nelayan Nusantara. Jakarta: PusatRisetPengolahanProdukdanSosekKelautandanPerikananBadanRisetKelautandanPerikanan, DepartemenKelautandanPerikanan.
  22. Schaefer,B.Martin,(1957)AStudyofthedynamicofthefisheryofyellowfintunainthe easterntropicalpasificocean,Inter-AmericatropicaltCommissionBuletin Vol IIno6, California.
  23. Schnute, J (1997), Improved Estimates from the Schaefer Production Model: Theoretical Consideration. J Fish Res Can.
  24. Sliskovi,Munitic,A.,Mrcelic,G.J.,?InfluenceofvariablecatchfactorsonsardinepopulationlevelineasternAdriatictestedby SystemDynamics?, University publication, UniversityofSplit, Facultyof Maritime Studies, Croatia.
  25. Subri, Muliadi. (2005). EkonomiKelautan. Jakarta PT Raja GrafindoPersada.
  26. Susanto (2006) KajianbioekonomisumberdayaKepiitngRajungan (PortunusPelagis L) di perairanKabupayenMaros Sulawesi Selatan.JurnalAgrisistem(2) SekolahTinggiPenyuluhPertanian (STTP) Gowa.
  27. Wakeland Wayne, (2006) ModelingFisheryRegulation&Compliance:ACaseStudyof the Yellowtail Rockfish, SistemDynamicreview, wwsystemdynamics.org
  28. WCED,(1987)WorldCommissiononEnvironmentandDevelopment, OurCommonFuture,ReportoftheWorld CommissiononEnvironmentandDevelopment.
  29. Widodo,Johanes,Suadi, (2006),PengelolaanSumberdayaPerikananLaut,GadjahMada University Press
  30. Widyastuti, ,? Sri? Saeni? ,? M.,? Djokosetiyanto,? D., (2006) ?Model? PengelolaanBerkelanjutanBudiDayaIkanDalamKerambaJaringApung,StudiKasusDiPerairanWadukPbSoedirman?,ForumPascasarjanaVol.29 No.1 Januari: 13-23.
  31. Wirjodirdjo, B., PengantarMetodologiSistemDinamik. 1st ed.Surabaya : ITS Press.

[Eko krisdiono, Z. Fanani, Moeljadi and Tjahjanulin. (2019); DINAMICS OF SUSTAINABLE WELFARE FISHERIES BASED ON TUNA FISH SENDANG BIRU, MALANG (DINAMIC SYSTEM APPROACH). Int. J. of Adv. Res. 7 (Feb). 865-873] (ISSN 2320-5407). www.journalijar.com


EKO KRISDIONO
POSTGRADUATE STUDENTS AT BRAWAIJAYA UNIVERSITY

DOI:


Article DOI: 10.21474/IJAR01/8556      
DOI URL: https://dx.doi.org/10.21474/IJAR01/8556