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AIT-(U.S.) CCNAA-(Taiwan) Joint Workshop (ATM): Solar Variability Effects on the Atmosphere and Space Processing in Taipei, Taiwan on April 15-17, 1991

AIT-(U.S.) CCNAA-(Taiwan) Joint Workshop (ATM): Solar Variability Effects on the Atmosphere and Space Processing in Taipei, Taiwan on April 15-17, 1991
AIT-(美国)CCNAA-(台湾)联合研讨会(ATM):太阳变率对大气和空间处理的影响,1991年4月15日至17日在台湾台北举行
批准号:
9100430
负责人:
Shi Wu
金额:
$2.6万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
1991
资助国家:
美国
项目状态:
已结题
起止时间:
1991-04-01 至 1992-09-30

项目摘要

项目成果

Shi Wu的其他基金

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中文摘要
翻译
这是美国第一个-台湾太阳能联合研讨会 变率对大气和空间处理的影响 由位于亨茨维尔的亚拉巴马大学的施武博士提出 C博士H.刘,台湾国立中央大学 由AIT支持-(美国)CCNAA-(台湾)合作社 科学计划。 大气科学司 捐助了6 000美元,以支持这一联合讲习班。 这 研讨会涵盖了对美国国家科学基金会研究使命重要的主题 为科学家提供了一个机会, 来讨论地球物理现象 在该区域,例如赤道异常区域。 它 提供了一个论坛,以规划未来的研究计划, 亚洲地区的高层大气研究, 加强这一领域的合作研究活动 美国和台湾的科学家。
英文摘要
This is the first U.S.-Taiwan joint workshop on solar variability effects on the atmosphere and space processing proposed by Dr. Shi Wu, the University of Alabama at Huntsville and Dr. C. H. Liu, the Taiwan National Central University supported by the AIT-(U.S.) CCNAA-(Taiwan) Cooperative Science Program. The Division of Atmospheric Sciences has contributed $6,000 to support this joint workshop. This workshop covers topics important to the NSF research mission on global change and provides an opportunity for scientists to discuss the geophysical phenomenon occurring specifically in that region, such as the equatorial anomaly region. It provides a forum to plan future research programs related to upper atmospheric research in this region of Asia and will increase cooperative research activities in this field between U.S. and Taiwan scientists.
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会议论文
Analyses of Active Region Characteristics Responsible for Solar Eruptive Events on the Basis of Observations with the Aid of Three-Dimensional Magnetohydrodynamic Simulation
Analyses of Observed Magnetic Field Characteristics for the Understanding of Solar Eruptions Physics Using a Data-Driven Three-Dimensional Magnetohydrodynamic (3D MHD) Model
Space Weather: Numerical Magnetohydrodynamics (MHD) Study of Coronal Mass Ejections (CMEs): Initiation and Propagation
Numerical MHD Investigations of the Dynamical Correspondence of CMEs, Flares, Prominences, and Associated MHD Waves
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