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智利 2015 年 3 月极端降水事件后土壤湿度演化的 InSAR 约束。

InSAR constraints on soil moisture evolution after the March 2015 extreme precipitation event in Chile.

机构信息

Department of Earth and Atmospheric Sciences, Cornell University, Ithaca, NY, 14853, USA.

School of Earth and Space Exploration, Arizona State University, Tempe, AZ, 85287, USA.

出版信息

Sci Rep. 2017 Jul 7;7(1):4903. doi: 10.1038/s41598-017-05123-4.

Abstract

Constraints on soil moisture can guide agricultural practices, act as input into weather, flooding and climate models and inform water resource policies. Space-based interferometric synthetic aperture radar (InSAR) observations provide near-global coverage, even in the presence of clouds, of proxies for soil moisture derived from the amplitude and phase content of radar imagery. We describe results from a 1.5 year-long InSAR time series spanning the March, 2015 extreme precipitation event in the hyperarid Atacama desert of Chile, constraining the immediate increase in soil moisture and drying out over the following months, as well as the response to a later, smaller precipitation event. The inferred temporal evolution of soil moisture is remarkably consistent between independent, overlapping SAR tracks covering a region ~100 km in extent. The unusually large rain event, combined with the extensive spatial and temporal coverage of the SAR dataset, present an unprecedented opportunity to image the time-evolution of soil characteristics over different surface types. Constraints on the timescale of shallow water storage after precipitation events are increasingly valuable as global water resources continue to be stretched to their limits and communities continue to develop in flood-prone areas.

摘要

土壤湿度的限制因素可以指导农业实践,作为天气、洪水和气候模型的输入,并为水资源政策提供信息。基于卫星的干涉合成孔径雷达 (InSAR) 观测提供了近全球覆盖范围,即使在有云层的情况下,也可以从雷达图像的幅度和相位内容中获取土壤湿度的代理数据。我们描述了一个为期 1.5 年的 InSAR 时间序列的结果,该时间序列跨越了 2015 年 3 月智利极度干旱的阿塔卡马沙漠的极端降水事件,该时间序列限制了随后几个月土壤湿度的立即增加和干燥,以及对后来较小降水事件的响应。在覆盖约 100 公里范围的独立、重叠 SAR 轨道之间,土壤湿度的推断时间演化非常一致。这场异常大的降雨事件,加上 SAR 数据集的广泛的空间和时间覆盖范围,为在不同地表类型上成像土壤特性的时间演化提供了一个前所未有的机会。随着全球水资源继续紧张到极限,社区继续在洪水多发地区发展,对降水后浅层储水的时间尺度的限制因素变得越来越重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6d46/5501829/c10dbf0f2d7f/41598_2017_5123_Fig1_HTML.jpg

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