项目编号: | 1358274
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项目名称: | SHINE: Estimating Source Locations of Interplanetary Type II Radio Bursts with Direction Finding Technique |
作者: | Pertti Makela
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承担单位: | Catholic University of America
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批准年: | 2013
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开始日期: | 2014-06-01
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结束日期: | 2018-05-31
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资助金额: | USD193977
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资助来源: | US-NSF
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项目类别: | Continuing 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: | type
; radio burst
; stereo/waves radio instrument
; radio source location
; radio event
; radio emission
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英文摘要: | The main goal of this 3-year SHINE project is to study the locations of the type II radio bursts at frequencies around and below 1 MHz by utilizing measurements from the Wind/WAVES and STEREO/WAVES radio instruments. The obtained radio source locations will be compared with the white-light images of Coronal Mass Ejections (CMEs) taken by the SOHO/LASCO and STEREO/SECCHI coronagraphs and heliospheric imagers. This research project will shed more light on the origin of the type II radio emissions during CME events and related shock waves. Furthermore, the project team aims to test the validity of various theoretical models of the type II radio bursts.
This research project contributes to broader societal activities, such as advancing the participation of women in science and improving the scientific literacy of the general public. The project team will present the results of this research project at national scientific meetings and will publish them in peer-reviewed scientific journals. In addition, the team will setup and maintain a website, where all relevant data for each analyzed radio event will be made available to the general public. The research and EPO agenda of this SHINE project supports the Strategic Goals of the AGS Division in discovery, learning, diversity, and interdisciplinary research. |
资源类型: | 项目
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标识符: | http://119.78.100.158/handle/2HF3EXSE/96855
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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: |
Pertti Makela. SHINE: Estimating Source Locations of Interplanetary Type II Radio Bursts with Direction Finding Technique. 2013-01-01.
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