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Lava morphology mapping by expert system classification of high-resolution side-scan sonar imagery from the East Pacific Rise, 9 degrees-10 degrees N

机译:通过专家系统分类,对东太平洋上升,北纬9度到10度的高分辨率侧面扫描声纳图像进行熔岩形态学制图

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Fine-scale lava morphology has been classified on the ridge crest of the East Pacific Rise between 9 degrees 15'N and 10 degrees 02'N using an expert system classification method. This method establishes the means to classify complicated seafloor environments by integrating textural and geometric feature attributes from a high-resolution side-scan sonar dataset where ground-reference data are available from near-bottom visual observations. The classification in this study focuses upon mapping the lava morphology distribution of sheet, lobate, and pillow flows along the East Pacific Rise. The reliability of the classification has been evaluated using an accuracy assessment. The study region yields a coverage area of 37,814 m(2) (44%) for lobate flows; 10,421 m(2) (12%) for pillow flows; 15,096 m(2) (18%) for sheet flows; 19,679 m(2) (23%) for fissured areas; and 2,967 m(2) (3%) for shadows or no data. The systematic distribution of lava morphology along the ridge found in this study supports the idea of using the regional distribution of surface morphology as an indicator of emplacement dynamics and supports an organization of the volcanic plumbing system at a third order segmentation scale beneath mid-ocean ridges.
机译:使用专业的系统分类方法,在东太平洋上升的脊顶上将细尺度的熔岩形态分类为9度15'N和10度02'N。该方法通过整合高分辨率侧面扫描声纳数据集的纹理和几何特征属性,建立了对复杂海底环境进行分类的方法,在该数据集中可以从近底视觉观测获得地面参考数据。本研究的分类重点在于绘制沿东太平洋上升带的片状,叶状和枕状流的熔岩形态分布。分类的可靠性已使用准确性评估进行了评估。该研究区域的叶状血流覆盖面积为37,814 m(2)(44%)。枕头流量为10,421 m(2)(12%);纸张流量为15,096 m(2)(18%);裂隙区域为19,679 m(2)(23%);和2967 m(2)(3%)用于阴影或无数据。这项研究中发现的沿着山脊的熔岩形态的系统分布支持使用地表形态的区域分布作为进位动力学指标的想法,并支持在中洋海岭以下以三阶分段尺度构造火山管道系统。 。

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