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The Northern Eurasia Earth Science Partnership: an example of science applied to societal needs.

机译:北部欧亚大陆地球科学伙伴关系:适用于社会需求的科学范例。

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摘要

Northern Eurasia, the largest land-mass in the northern extratropics, accounts for ~20% of the global land area. However, little is known about how the biogeochemical cycles, energy and water cycles, and human activities specific to this carbon-rich, cold region interact with global climate. A major concern is that changes in the distribution of land-based life, as well as its interactions with the environment, may lead to a self-reinforcing cycle of accelerated regional and global warming. With this as its motivation, the Northern Eurasian Earth Science Partnership Initiative (NEESPI) was formed in 2004 to better understand and quantify feedbacks between northern Eurasian and global climates. The first group of NEESPI projects has mostly focused on assembling regional databases, organizing improved environmental monitoring of the region, and studying individual environmental processes. That was a starting point to addressing emerging challenges in the region related to rapidly and simultaneously changing climate, environmental, and societal systems. More recently, the NEESPI research focus has been moving toward integrative studies, including the development of modeling capabilities to project the future state of climate, environment, and societies in the NEESPI domain. This effort will require a high level of integration of observation programs, process studies, and modeling across disciplines.
机译:北部欧亚大陆是北温带地区最大的陆地,约占全球陆地面积的20%。但是,对于这个富含碳的寒冷地区特有的生物地球化学循环,能量和水循环以及人类活动如何与全球气候相互作用却知之甚少。一个主要问题是,陆地生命分布的变化及其与环境的相互作用,可能导致区域和全球变暖加速的自我强化循环。以此为动机,于2004年成立了北欧亚地球科学合作计划(NEESPI),以更好地理解和量化北欧与全球气候之间的反馈。 NEESPI的第一批项目主要集中于组装区域数据库,组织对该区域的环境监测,以及研究各个环境过程。这是应对该区域与气候变化,环境和社会系统快速变化同时相关的新挑战的起点。最近,NEESPI的研究重点已转向综合研究,包括开发建模能力以预测NEESPI领域的未来气候,环境和社会状况。这项工作将需要高度集成的观察程序,过程研究和跨学科建模。

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