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Mapping distribution of Rastrelliger kanagurta in the exclusive economic zone (EEZ) of Malaysia using maximum entropy modeling approach.
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- Author(s): Yusop, Syazwani Mohd; Mustapha, Muzzneena Ahmad; Ibrahim; Hanafiah; Jumali; Noorani; Hasbullah
- Source:
AIP Conference Proceedings; 2018, Vol. 1940 Issue 1, p1-1, 1p, 3 Charts, 2 Graphs, 1 Map- Subject Terms:
- Source:
- Additional Information
- Abstract: The coupling of fishing locations for
R. kanagurta obtained from SEAFDEC and multi-sensor satellite imageries of oceanographic variables; sea surface temperature (SST), sea surface height (SSH) and chl-a concentration (chl-a) were utilized to evaluate the performance of maximum entropy (MaxEnt) models forR. kanagurta fishing ground for prediction. Besides, this study was conducted to identify the relative percentage contribution of each environmental variable considered in order to describe the effects of the oceanographic factors on the species distribution in the study area. The potential fishing grounds during intermonsoon periods; April and October 2008-2009 were simulated separately and covered the near-coast of Kelantan, Terengganu, Pahang and Johor. The oceanographic conditions differed between regions by the inherent seasonal variability. The seasonal and spatial extents of potential fishing grounds were largely explained by chl-a concentration (0.21-0.99 mg/m3 in April and 0.28-1.00 mg/m3 in October), SSH (77.37-85.90 cm in April and 107.60-108.97 cm in October) and SST (30.43-33.70 °C in April and 30.48-30.97 °C in October). The constructed models were applicable and therefore they were suitable for predicting the potential fishing zones ofR. kanagurta in EEZ. The results from this study revealed MaxEnt’s potential for predicting the spatial distribution ofR. kanagurta and highlighted the use of multispectral satellite images for describing the seasonal potential fishing grounds. [ABSTRACT FROM AUTHOR] - Abstract: Copyright of AIP Conference Proceedings is the property of American Institute of Physics and its content may not be copied or emailed to multiple sites or posted to a listserv without the copyright holder's express written permission. However, users may print, download, or email articles for individual use. This abstract may be abridged. No warranty is given about the accuracy of the copy. Users should refer to the original published version of the material for the full abstract. (Copyright applies to all Abstracts.)
- Abstract:
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