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首页> 外文期刊>Journal of geophysical research. Earth Surface: JGR >Applications of SAR Interferometric Coherence Time Series: Spatiotemporal Dynamics of Geomorphic Transitions in the South-Central Andes
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Applications of SAR Interferometric Coherence Time Series: Spatiotemporal Dynamics of Geomorphic Transitions in the South-Central Andes

机译:SAR干涉式相干时间序列的应用:中南部地貌过渡的时空动态

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Sediment transport domains in mountain landscapes are characterized by fundamentally different processes and rates depending on several factors, including geology, climate, and biota. Accurately identifying where transitions between transport domains occur is an important step to quantify the past, present, and future contribution of varying erosion and sedimentation processes and enhance our predictive capabilities. We propose a new methodology based on time series of synthetic aperture radar (SAR) interferometric coherence images to map sediment transport regimes across arid and semiarid landscapes. Using 4 years of Sentinel-1 data, we analyze sediment transport regimes for the south-central Andes in northwestern Argentina characterized by steep topographic and climatic gradients. We observe seasonally low coherence during the regional wet season, particularly on hillslopes and in alluvial channels. The spatial distribution of coherence is compared to drainage areas extracted from digital topography to identify two distinct transitions within watersheds: (a) a hillslope-to-fluvial and (b) a fluvial-to-alluvial transition. While transitions within a given basin can be well-constrained, the relative role of each sediment transport domain varies widely over the climatic and topographic gradients. In semiarid regions, we observe larger relative contributions from hillslopes compared to arid regions. Across regional gradients, the range of coherence within basins positively correlates to previously published millennial catchment-wide erosion rates and to topographic metrics used to indicate long-term uplift. Our study suggests that a dense time series of interferometric coherence can be used as a proxy for surface sediment movement and landscape stability in vegetation-free settings at event to decadal timescales.
机译:山地风景中的沉积物传输域的特点是根据几个因素,包括地质,气候和生物群的几个因素为特征。准确地识别运输域之间的过渡发生的位置是量化过去,现在和未来侵蚀和沉降过程的未来贡献的重要步骤,并提高我们的预测能力。我们提出了一种基于时间序列的合成孔径雷达(SAR)干涉相干图像的新方法,以映射干旱和半干旱景观的沉积物传输制度。使用4年的Sentinel-1数据,我们分析了阿根廷西北部南部南部的沉积物运输制度,其特征是陡峭的地形和气候梯度。我们在区域潮湿季节观察季节性低的一致性,特别是在山坡上和冲积渠道。将相干性的空间分布与从数字地形提取的排水区域进行比较,以识别流域内的两个不同的过渡:(a)山坡到氟和(b)氟对冲积转变。虽然给定盆内的过渡可以是良好的受约束的,但是每个沉积物传输结构域的相对作用在气候和地形梯度上变化广泛。在半干旱地区,与干旱地区相比,我们观察来自Hillslopes的更大的相对贡献。跨区域梯度,盆地内的一致性范围与先前公布的千禧年集水区侵蚀率以及用于表示长期隆起的地形指标相关联。我们的研究表明,干涉式相干性的密集时间序列可以用作表面沉积物运动的代理,以便在植被的环境中到达Decadal Timescales。

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