项目编号: | 1414517
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项目名称: | Synoptic Investigation of Extreme Events: Sun to the Upper Atmosphere |
作者: | Michael Liemohn
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承担单位: | University of Michigan Ann Arbor
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批准年: | 2013
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开始日期: | 2014-08-15
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结束日期: | 2016-12-31
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资助金额: | USD100916
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资助来源: | US-NSF
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项目类别: | Standard Grant
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国家: | US
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语种: | 英语
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特色学科分类: | Geosciences - Atmospheric and Geospace Sciences
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英文关键词: | synoptic analysis
; magnetosphere
; system
; extreme event
; previous synoptic work
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英文摘要: | Understanding the serious effects of extreme events in the Sun, solar wind, magnetosphere and ionosphere system has societal urgency as these events are the ones what can cause damage to systems in space and on the ground. Over the past few years it has become increasing evident that the system needs to be studied as a whole. However, to do so requires combining large amounts of data ranging from solar remote sensing to in situ observations in the magnetosphere and ionosphere. Large scale models of the entire system are needed to organize and interpret the diverse observations. Just determining how to do this is a significant task. The goal of this proposal is to demonstrate the value of synoptic analyses for producing new discoveries about how connections within the geospace system create new or modified phenomena, for raising new questions about individual processes by looking at things from a different perspective, and for developing innovative ways of leveraging all the information from global models and diverse data sets into the most complete picture possible of the geospace response and the solar drivers. The final outcome of this work will be a review article referencing all of these and previous synoptic work, drawing together the broader picture with lessons learned which will serve as a reference for the details of achieving data/model closure |
资源类型: | 项目
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标识符: | http://119.78.100.158/handle/2HF3EXSE/96035
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Appears in Collections: | 影响、适应和脆弱性 气候减缓与适应
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Recommended Citation: |
Michael Liemohn. Synoptic Investigation of Extreme Events: Sun to the Upper Atmosphere. 2013-01-01.
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