The Bio Economic Seaweed Model (BESeM) for modelling tropical seaweed cultivation – xperimentation and modelling


P. A. J. van Oort1, - and N. Rukminasari2, - and G. Latama2, - and A. Verhagen1, - and A.K. van der Werf1, - (2022) The Bio Economic Seaweed Model (BESeM) for modelling tropical seaweed cultivation – xperimentation and modelling. Journal of Applied Phycology.

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Abstract (Abstrak)

The Bio Economic Seaweed Model (BESeM) is a model designed for modelling tropical seaweed cultivation. BESeM can simulate the common tropical seaweed cultivation system with multiple harvests per year, clonal reproduction and labour intensive harvesting and replanting activities. Biomass growth is modelled as a sigmoid, with growth being initially exponen tially and eventually fattening of towards a maximum weight per plant or per square meter (wf,max). To estimate the latter, longer duration experiments than normal are needed – in the order of 100 days rather than 45 days. Drying (on platforms on the beach) is simulated as well as increase in harvested chemical concentration over time since planting, for harvested chemicals such as agar extracted from Gracilaria or carrageenan extracted from Kappaphycus or Euchema. BESeM has a limited number of parameters which makes it easily amenable to new sites and species. An experiment is presented for a site in Indonesia in which Gracilaria was monitored for 120 days in 6 nearby sites and from which BESeM model parameters were estimated. A simulation example is presented which illustrates how BESeM can be used to fnd the optimum combina tion of replanting weight and harvest cycle length (in days) for maximising gross and net farm income.

Item Type: Article
Subjects: V Naval Science > VM Naval architecture. Shipbuilding. Marine engineering
Depositing User: - Andi Anna
Date Deposited: 22 Aug 2022 03:36
Last Modified: 22 Aug 2022 03:36
URI: http://repository.unhas.ac.id:443/id/eprint/18379

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