| Literature DB >> 24035429 |
Enhui Liao1, Yuwu Jiang2, Xiao-Hai Yan1, Zhaoyun Chen3, Jia Wang3, Luoping Zhang3.
Abstract
Three optimization methods are employed to allocate Marine Environmental Carrying Capacity (MECC) in the Xiamen Bay. The hydrodynamic and pollutant fields are first simulated by the Princeton Ocean Model. Taking phosphorus as an index of the water quality, the response fields are then calculated. These response fields represent the relationship between the concentration of the sea zone and the pollution sources. Finally, MECC is optimized and distributed in the Xiamen Bay by three optimization methods. The results show classical linear optimization can only maximize the satisfaction level for one of the stake holders', e.g., dischargers or environmental protection bureau, satisfaction level. However, the fuzzy and grey fuzzy optimizations can provide a compromise, and therefore a fairer result, by incorporating the conflicting goals of all of the different stakeholders. Compared with fuzzy optimization, the grey fuzzy optimization provides a more flexible choice for the decision-makers.Entities:
Keywords: Classical linear optimization; Fuzzy optimization; Grey fuzzy optimization; Marine environmental carrying capacity; Numerical model; Xiamen Bay
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Year: 2013 PMID: 24035429 DOI: 10.1016/j.marpolbul.2013.08.023
Source DB: PubMed Journal: Mar Pollut Bull ISSN: 0025-326X Impact factor: 5.553