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首页> 外文期刊>Journal of geophysical research. Planets >Fractal properties of isolines at varying altitude revealing different dominant geological processes on Earth
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Fractal properties of isolines at varying altitude revealing different dominant geological processes on Earth

机译:等值线的分形特性在不同的高度揭示不同主导地质过程究竟

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摘要

Geometrical properties of landscapes result from the geological processes that have acted through time. The quantitative analysis of natural relief represents an objective form of aiding in the visual interpretation of landscapes, as studies on coastlines, river networks, and global topography, have shown. Still, an open question is whether a clear relationship between the quantitative properties of landscapes and the dominant geomorphologic processes that originate them can be established. In this contribution, we show that the geometry of topographic isolines is an appropriate observable to help disentangle such a relationship. A fractal analysis of terrestrial isolines yields a clear identification of trenches and abyssal plains, differentiates oceanic ridges from continental slopes and platforms, localizes coastlines and river systems, and isolates areas at high elevation (or latitude) subjected to the erosive action of ice. The study of the geometrical properties of the lunar landscape supports the existence of a correspondence between principal geomorphic processes and landforms. Our analysis can be easily applied to other planetary bodies.
机译:几何属性的景观效果行动的地质过程时间。表示客观形式的帮助目视判读的景观研究在海岸线上,河流网络和全球地形,显示。是一个清晰的关系的风景和定量属性主要地貌过程产生他们可以建立。显示的几何地形等值线一个适当的可观察到的帮助解决这样的关系。陆地等值线收益率明显识别的战壕和深海平原,从大陆区别海洋山脊斜坡和平台、定位海岸线河流系统,在高隔离区域高程(或纬度)受到侵蚀行动的冰。月球景观支持的属性之间存在对应关系的校长地貌过程和地貌。可以很容易地应用到其他行星。

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