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Use of Remotely-Derived Bathymetry for Modelling Biomass in Marine Environments

机译:在海洋环境中使用远程衍生的测深法模拟生物量

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The paper presents results on the influence of geometric attributes of satellite-derived raster bathymetric data, namely the General Bathymetric Charts of the Oceans, on spatial statistical modelling of marine biomass. In the initial experiment, both the resolution and projection of the raster dataset are taken into account. It was found that, independently of the equal-area projection chosen for the analysis, the calculated areas are very similar, and the differences between them are insignificant. Likewise, any variation in the raster resolution did not change the computed area. Although the differences were shown to be insignificant, for the subsequent analysis we selected the cylindrical equal area projection, as it implies rectangular spatial extent, along with the automatically derived resolution. Then, in the second experiment, we focused on demersal fish biomass data acquired from trawl samples taken from the western parts of ICES Sub-area VII, near the sea floor. The aforementioned investigation into processing bathymetric data allowed us to build various statistical models that account for a relationship between biomass, sea floor topography and geographic location. We fitted a set of generalised additive models and generalised additive mixed models to combinations of trawl data of the roundnose grenadier (Coryphaenoides rupestris) and bathymetry. Using standard statistical techniques- such as analysis of variance, Akaike information criterion, root mean squared error, mean absolute error and cross-validation-we compared the performance of the models and found that depth and latitude may serve as statistically significant explanatory variables for biomass of roundnose grenadier in the study area. However, the results should be interpreted with caution as sampling locations may have an impact on the biomass–depth relationship.
机译:本文介绍了来自卫星的栅格测深数据的几何属性(即“海洋总测深图”)对海洋生物量空间统计建模的影响的结果。在最初的实验中,同时考虑了栅格数据集的分辨率和投影。发现,与为分析选择的等面积投影无关,计算的面积非常相似,并且它们之间的差异不明显。同样,栅格分辨率的任何变化都不会改变计算区域。尽管差异并不明显,但在随后的分析中,我们选择了圆柱等面积投影,因为它暗示了矩形空间范围以及自动得出的分辨率。然后,在第二个实验中,我们集中研究了从ICES VII区域西部附近海底采集的拖网样本中获得的鱼类深海生物量数据。前面对测深数据的处理研究使我们能够建立各种统计模型,以解释生物量,海床地形和地理位置之间的关系。我们为圆鼻榴弹兵(Coryphaenoides rupestris)的拖网数据和测深法组合了一套广义加性模型和广义加性混合模型。使用标准统计技术(例如方差分析,Akaike信息准则,均方根误差,平均绝对误差和交叉验证),我们比较了模型的性能,发现深度和纬度可以作为生物量的统计学上重要的解释变量研究区的圆鼻榴弹兵。但是,应谨慎解释结果,因为采样位置可能会影响生物量与深度的关系。

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