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An overview of seabed-mapping technologies in the context of marine habitat classification

机译:海洋栖息地分类背景下的海床制图技术概述

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A wide range of seabed-mapping technologies is reviewed in respect to their effectiveness in discriminating benthic habitats at different spatial scales. Of the seabed attributes considered important in controlling the benthic community of marine sands and gravel, sediment grain size, porosity or shear strength, and sediment dynamics were highlighted as the most important. Whilst no one mapping system can quantify all these attributes at the same time, some may be estimated by skilful interpretation of the remotely sensed data. For example, seabed processes or features, such as bedform migration, scour, slope failure, and gas venting are readily detectable by many of the mapping systems, and these characteristics in turn can be used to assist a habitat classification (and monitoring) of the seabed. We tabulate the relationship between "rapid" continental shelf sedimentological processes, the seabed attributes affecting these processes, and the most suitable mapping system to employ for their detection at different spatial scales.
机译:关于海床制图技术在区分不同空间尺度底栖生境方面的有效性,人们对其进行了审查。在控制海沙和砾石底栖群落中被认为重要的海底属性中,最重要的是强调沉积物粒度,孔隙度或剪切强度以及沉积物动力学。虽然没有一个制图系统可以同时量化所有这些属性,但是可以通过对遥感数据的熟练解释来估计一些属性。例如,许多测绘系统很容易检测到海床过程或特征,例如床形迁移,冲刷,边坡破坏和瓦斯涌出,这些特征又可以用来帮助对海底生物进行栖息地分类(和监测)。海底。我们将“快速”大陆架沉积过程,影响这些过程的海床属性以及最适合用于不同空间尺度的探测的制图系统之间的关系制成表格。

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