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Bridging river basin scales and processes to assess human-climate impacts and the terrestrial hydrologic system

机译:桥接流域规模和过程以评估人类气候影响和陆地水文系统

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The increasing expression of human activity, climate variability, and climate change on humid, terrestrial hydrologic systems has made the integrated nature of large river basins more apparent. However, to date, there is no instrument platform sufficient to characterize river basins' hydrologic couplings and feedbacks, with many processes and impacts left almost entirely unobserved (e.g., snowmelt floods). Characterization at the river basin scale will require a more holistic vision and a far greater commitment from the environmental science community. It will require new designs and implementation of integrated instrumentation, a new generation of models, and a management framework that clearly addresses the human-climate-terrestrial interactions impacting our watersheds and river basins. Initially, we propose that existing "similarity classifications" (e.g., regional soil, geologic, ecologic, hydrographic digital products) can provide a starting point for organizing historical data and initiating a long-term adaptive, multiscale observing strategy. This vision paper outlines instrumentation platforms for point, plot, reach, and hillslope scales that could be located within the "characteristic" landscapes of river basins. The network of observing platforms then forms the basis of a "Hydro-Mesonet" that can potentially support multiscale, multiprocess scientific studies necessary to understand and improve forecasts of our water resources at the river basin scale. This paper concludes with a discussion of how a network of such sites can support research at the level of the individual researcher and scale to the level of community-wide initiatives.
机译:人类活动,气候变异性和气候变化在潮湿的陆地水文系统上的表达日益增加,这使得大型流域的综合性质更加明显。但是,迄今为止,还没有足够的仪器平台来描述流域的水文耦合和反馈特征,许多过程和影响几乎完全未被观察到(例如融雪洪水)。在流域尺度上进行表征将需要更加全面的视野和环境科学界的更大承诺。它将需要新的设计和集成仪器的实施,新一代的模型以及一个明确解决影响我们的流域和流域的人-气候-地面相互作用的管理框架。最初,我们建议现有的“相似性分类”(例如区域土壤,地质,生态,水文数字产品)可以为组织历史数据和启动长期的自适应多尺度观测策略提供起点。该愿景论文概述了点,标绘,范围和山坡标尺的仪器平台,这些平台可以位于流域的“特征”景观内。然后,观测平台网络构成了“水文台”的基础,该“水文台”可以潜在地支持多尺度,多过程的科学研究,这对于理解和改善流域尺度的水资源预报是必不可少的。本文最后讨论了此类站点的网络如何在单个研究人员级别上支持研究并扩展到整个社区计划的级别。

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