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GIS-aided spatial analysis of fish abundance and biomass in the Bulgarian Black Sea

机译:保加利亚黑海鱼丰曲和生物量的GIS辅助空间分析

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Geographical information systems (GIS) are commonly used as a supplementary tool in fisheries analysis. We used tabular data containing calculated indices of catch per unit area (CPUA) and biomass regarding 5 target species. These post-expedition data were integrated into GIS by using the trawling locations coordinate records. The latter were subsequently exported as georeferenced points containing CPUA and biomass values in the shapefile attribute tables. These values were interpolated into grids using inverse distance weighting (IDW), with the interpolation procedures applied for each of the 5 species and each expedition separately. The resulting raster files were reclassified converting the quantitative data from stretched values into interval breaks. The interpolation results were illustrated as digital maps. The study proves that GIS represents an effective tool in fisheries assessments, especially when using IDW. However, the credibility of this approach is highly dependent on the input data and the point densities, therefore GIS cannot replace entirely the analysis/assessment expertise by experienced ichthyologists. Nevertheless, GIS and georeferenced data remain of crucial importance.
机译:地理信息系统(GIS)通常用作渔业分析中的补充工具。我们使用包含计算的单位区域(CPUA)的计算索引的表格数据和有关5个目标物种的生物量。通过使用拖网区的坐标记录将这些后探险后的数据集成到GIS中。随后将后者导出为包含CPUA和Shapefile属性表中的生物量值的地理位置点。使用逆距离加权(IDW)内插入网格中的这些值,其插值过程适用于5种中的每一个和每个探险。得到的栅格文件被重新分类将量化数据从拉伸值转换为间隔中断。插值结果被称为数字地图。该研究证明,GIS代表了渔业评估中有效的工具,特别是在使用IDW时。但是,这种方法的可信度高度依赖于输入数据和点密度,因此GIS无法通过经验丰富的ICHTHYOLOG学家完全取代分析/评估专业知识。然而,GIS和地理参考数据仍然是至关重要的。

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