Using GMT for 2D and 3D Modeling of the Ryukyu Trench Topography, Pacific Ocean

IF 0.6 Q3 GEOGRAPHY Miscellanea Geographica Pub Date : 2020-11-19 DOI:10.2478/mgrsd-2020-0038
Polina Lemenkova
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引用次数: 23

Abstract

Abstract This research focuses on the 2D and 3D geospatial analysis of the Ryukyu Trench, a deep-sea trench located in the western Pacific Ocean between Japan and Taiwan. The aim of the research is to visualize regional differences in the topography of the southern (S) and northern (N) parts of the trench. Technically, the methodology is based on using the Generic Mapping Tools (GMT) scripting toolset, for modelling the General Bathymetric Chart of the Oceans (GEBCO), and Earth Topography and Bathymetry dataset (ETOPO1) raster grids. The results demonstrated topographic differences in the two segments. The most frequent depths lie between −5,000 and −6,000 m. The N part has steeper gradient slopes and deeper bathymetry. Of the depth differences >−6,000 m, S has nine values with depths >−6,800 m while N shows 123 records (max −7,460 m). The submarine terraces of S have gentler slopes compared with the N segment. The technical approach presents GMT-based 2D and 3D cartographic modelling aimed at visualizing regional variations of the seafloor topography.
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使用GMT对太平洋琉球海沟地形进行二维和三维建模
摘要本研究对位于日本和台湾之间的西太平洋深海沟琉球海沟进行了二维和三维地理空间分析。这项研究的目的是可视化海沟南部(S)和北部(N)部分地形的区域差异。从技术上讲,该方法是基于使用通用测绘工具(GMT)脚本工具集,对海洋通用水深图(GEBCO)和地球地形和水深数据集(ETOPO1)栅格进行建模。结果显示了两段的地形差异。最常见的深度在- 5000到- 6000米之间。N部分的坡度更陡,水深更深。在> ~ 6000 m的深度差中,S有9个值(> ~ 6800 m), N有123个记录(最大值为- 7460 m), S的海底阶地坡度较N段平缓。该技术方法提出了基于gmt的2D和3D制图建模,旨在可视化海底地形的区域变化。
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来源期刊
CiteScore
1.90
自引率
0.00%
发文量
21
审稿时长
14 weeks
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