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EarthCube IA: Magnetosphere-Ionosphere-Atmosphere Coupling

EarthCube IA: Magnetosphere-Ionosphere-Atmosphere Coupling
EarthCube IA:磁层-电离层-大气耦合
批准号:
1541009
负责人:
Jesper Gjerloev
金额:
$69.78万
依托单位:
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2015
资助国家:
美国
项目状态:
已结题
起止时间:
2015-09-15 至 2018-08-31

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中文摘要
翻译
这里提出的科学工作将进行必要的研究和开发,以创造一套新的、独特的高纬度电动力学、电离层-热层——&磁层网络工具和产品将提供给整个地球科学界。结合起来,该项目的数据产品将允许推导出极光电离层的第一原理电磁解决方案。项目将以完整的极光电离层电磁解决方案的形式,为地学界开发一套新的数据资源,并将重点开发?社区数据基础设施?地球立方综合活动的组成部分。因此,该项目不仅允许访问期望的派生产品,而且还允许访问输入数据和中间产品的数据库,从而为其他建模工作提供支持。该系统还将被设计为可扩展的,允许将其他数据产品和模型集成到系统中。该系统将完全支持广泛应用于地球科学界的现有标准,如数据访问协议(DAP)。在本提案中进行的研究将使两个不同领域的变革性研究成为可能:磁层。电离层和中性大气。MIAC项目通过与EarthCube项目目标相匹配的实现,解决了极光电离层的完整电磁解决方案。其目的是开发一系列互锁的网络服务,提供对底层MIAC数据集(AMPERE、SuperDARN和SuperMAG)的访问,这些数据集应用科学算法推导出所需的电动力产品,并提供数据翻译和可视化服务。这种服务网络将向社区开放,并允许用户访问任何单独的服务。在这个项目中进行的研究将使两个不同领域的变革性研究成为可能:磁层——&电离层和中性大气通过a)高—‐纬度电,,# 8208;沿磁力线入射太阳风和磁层的动力学耦合;B)高纬度地区电离层和热层的变化使整个极区电导率发生变化,进而影响磁层的动力学;C)电动力能量和动量输入在高层大气中沉积,并发射中性风,然后与离子速度耦合,将成分变化输送到中低纬度地区;D)风和成分与来自低层大气的撞击波相耦合。
英文摘要
The scientific work proposed here will carry out the research and development necessary to create a new, unique set of high-latitude electro-dynamic, ionospheric-thermospheric-­‐magnetospheric cyberbased tools and products that will be available to the entire geosciences community. In combination, the data products from this project will allow the derivation of a first principle electromagnetic solution for the auroral ionosphere. Project will develop a new set of data resources for the geoscience community in the form of a complete electromagnetic solution of the auroral ionosphere and will focus on developing the ?Data Infrastructure for Communities? component of the EarthCube Integrative Activities. The project will thus allow access to not only the desired derived products, but also provide support for other modeling efforts by allowing access to the database of input data and intermediary products. The system will also be designed to be extensible, allowing additional data products and models to be integrated into the system. The system will fully support existing standards that are used in the broader geosciences community such as the Data Access Protocol (DAP).The research undertaken in this proposal will enable transformative research in two otherwise separated fields: magnetosphere-­‐ionosphere and neutral atmosphere. The MIAC project addresses the complete electromagnetic solution of the auroral ionosphere, through an implementation that matches the goals of the EarthCube program. The intent is to develop a series of interlocking web services that provide access to the underlying MIAC datasets (AMPERE, SuperDARN and SuperMAG), that apply the science algorithms to derive the desired electro-­ dynamic products, and provide data translation and visualization services. This mesh of services will be open to the community and will allow users to access any individual service. The research undertaken in this project will enable transformative research in two otherwise separated fields: magnetosphere-­‐ionosphere and neutral atmosphere through a) the high-­‐latitude electro-­‐dynamics couple to the incoming solar wind and magnetosphere along magnetic field lines; b) the changes in the ionosphere and thermosphere at high latitudes provide changes to the conductivities throughout the polar region, which then effect the dynamics in the magnetosphere; c) the electrodynamic energy and momentum inputs get deposited in the upper atmosphere and launch neutral winds that then couple to ion velocities and transport compositional changes to the mid and low latitudes; d) the winds and composition couple to waves impinging from the lower atmosphere.
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SuperMAG: New Science Capabilities and Continued Operation
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    1852715
  • 项目类别:
    Continuing Grant
  • 资助金额:
    $97.17万
  • 财政年份:
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  • 负责人:
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SuperMAG: High Time-resolution Data Enabling Global UltraLow Frequency (ULF) Studies
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    1743030
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    2018
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SuperMAG Enhanced Capabilities Enabling Magnetosphere-Ionosphere Research
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    1417899
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    Continuing Grant
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    2015
  • 负责人:
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Collaborative Research: A Comprehensive Data Base of Global Reconnection Measurement
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    1321860
  • 项目类别:
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  • 财政年份:
    2014
  • 负责人:
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国内基金
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多任务深度学习融合多模态数据术前精准预测IA期非小细胞肺癌亚肺叶切除术复发风险
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    JCZRYB202500270
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Ia型超新星及相关特殊天体研究
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南方根结线虫Mi-UNP与Bt-Cry1Ia36互作研究及其功能分析
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