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Bathymetry and side scan imagery of SeaBeam 2000 multi-beam echo sounder on the Eastern Ulleung basin, East Sea of Korea (Japan Sea)

机译:韩国东海东海东海(日本海)东海的海滨2000多梁回声发声器的沐浴和侧扫描图像

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Seabeam 2000, a multi-beam echo sounder, is a new generation seafloor mapping system of which a single swath covers an angular range of -60/spl deg/ to 60/spl deg/ from the vertical direction with 121 beams. It provides high density and high quality bathymetry data along with side scan like amplitude imagery. The purpose of this article presents a post-processed Seabeam bathymetry and 121 returning amplitude imagery using digital image processing techniques. As a processor to convert vector-formatted Seabeam data into raster image mosaic, the following procedures are described: interpolation of unsampled beam data, removal of outliers, spatial registration of various types of data, and position correction of data in equi-spatial grid resolution. Even though the side scan imagery is fully corrected in real time for variations in ship speed and direction, it has low contrast due to the attenuation of side scan like returning amplitude signals along the horizontal range across the ship track. it has been observed that the levels of the returning acoustic signals, and adopted for contrast enhancement of digital side scan image. The results of the processed side scan image from the survey area (37/spl deg/ 00'N to 38/spl deg/ 30'N and 131/spl deg/ 00'E to 132/spl deg/ 00'E) reveal a newly discovered channels which develops into the lower slope regions (center of the survey area; depth 2,000 to 2,200 m) to deep bottom (2,300 m). There are many slope failures accompanied by slumping sliding, debris flows and turbidity currents at the southern high slope regions of Dok islands and around the submerged topographic high. On the other hand, large amounts of sediments were moved to deep water bottom along the channels during slope failures. The channel in this region affected by strong bottom current speed and directions.
机译:Seabeam 2000,一种多光束回波发声器,是一种新一代海底映射系统,其单个条子覆盖与121梁的垂直方向的角度范围为-60 / spl°/°/°/°/°。它提供高密度和高质量的浴约集数据以及副扫描,如幅度图像。本文的目的是使用数字图像处理技术提出了后处理的海洋沐浴浴和121个返回幅度图像。作为处理器将矢量格式化的海滨数据转换为光栅图像镶嵌,描述了以下过程:插值不采样的光束数据,移除异常值,各种类型数据的空间登记,以及等空间网格分辨率中的数据的位置校正。即使在船速和方向上的变化实时完全校正侧扫图像,它也具有低对比度,由于沿船闸轨道沿水平范围的返回幅度信号返回幅度信号。已经观察到返回声信号的水平,并采用了数字侧扫描图像的对比度增强。从调查区域(37 / SPL DEG / 00'N至38 / SPL DEG / 30'N和131 / SPL DEG / 00'e至132 / SPL DEG / 00'E)的处理后侧扫描图像的结果显示一种新发现的通道,该渠道发展到下坡区域(调查区域的中心;深度为2,000至2,200米)到深底(2,300米)。在Dok岛的南部高斜坡区域和浸没的地形高处,有许多斜坡故障伴随着滑动的滑动,碎片流动和浊度电流。另一方面,在斜率故障期间,大量沉积物沿着通道移动到深水底部。该区域的通道受强底电流速度和方向的影响。

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