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Critical Zone Observatories: Building a network to advance interdisciplinary study of Earth surface processes

机译:关键地带天文台:建立网络以推进对地球表面过程的跨学科研究

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摘要

We live at the dynamic interface between the solid Earth and its outer fluid envelopes. This interface, extending from the outer vegetation canopy to the base of active groundwater, was recently named the Critical Zone because it supports life and is increasingly impacted by human actions. Understanding the complex interactions between processes that operate in and shape the Critical Zone requires interdisciplinary approaches that span wide spatial and temporal scales. Tectonic processes, weathering, fluid transport, and biological processes control the function and structure of the Critical Zone. Three Critical Zone Observatories recently established by the U.S. National Science Foundation are designed to integrate studies of process interactions up to the watershed scale. A goal of the program is to build the three independently conceived observatories into a network from which broader understanding - larger spatial scales but also deeper insight - can emerge.
机译:我们生活在固体地球与其外部流体包膜之间的动态界面上。该界面从外部植被冠层一直延伸到活跃的地下水基础,最近被命名为临界区,因为它支持生命,并且受到人类行为的影响越来越大。要了解在关键区域内运作并形成关键区域的过程之间的复杂相互作用,就需要跨学科的方法,这些方法应跨越广泛的时空尺度。构造过程,风化作用,流体输送和生物过程控制着关键带的功能和结构。美国国家科学基金会最近建立了三个临界区天文台,旨在整合对流域范围内的过程相互作用的研究。该计划的目标是将三个独立构想的观测站构建到一个网络中,从中可以产生更广泛的了解-更大的空间尺度,也可以得到更深刻的见解。

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