
简介:
穆大鹏,博士,博士后,副研究员;2018年入选山东大学首批特别资助类博士后;2024年入选山东大学未来学者计划
研究兴趣:
从事海平面变化与时变重力研究,具体兴趣包括:
(1)地表质量迁移与海平面变化成因
(2)同化观测资料与模式输出研究海平面上升
(3)陆地垂直位移变化与水储量反演
邮箱:mdp321@126.com;mdp@sdu.edu.cn
办公室:闻天楼 南楼505
教育背景:
2018年6月,固体地球物理,博士,中国科学院大学
2014年6月,大地测量学与测量工程,硕士,山东科技大学
2011年6月,测绘工程,本科,南京信息工程大学
工作经历:
2021年6月至今,副研究员,空间科学与技术学院,山东大学
2022年10月-2023年10月,澳大利亚IMAS研究所,访问学者
2018年6月-2021年6月,博士后,山东大学
任教课程:
大地测量学基础;测量学;最优估计;大学物理Ⅲ
承担和参与项目:
中国博士后科学基金面上一等,8万,2019–2020,主持
国家自然科学基金青年项目,29万,2020–2022,主持
国家自然科学基金重大项目课题子课题,101万,2022–2026,负责
主要期刊论文:
[1].穆大鹏,徐天河,闫昊明,2024. 1950-2020年中国沿海海平面上升,中国科学:地球科学,54, 821–829.
[2].Mu D., Huang R., Xu T. Yan H.,2024. Inferring global ocean mass increase from tide gauges network with climate models,Geophysical Research Letters, 51, DOI: 10.1029/2023GL108056.
[3].Mu D., Xu T., Yan H.,2024. Sea level rise along China coast from 1950 to 2020.Science China Earth Sciences, 67(3), 802–810.
[4].Mu D., Church J., King M., et al.,2024. Contrasting discrepancy in the sea level budget between the North and South Atlantic Ocean since 2016,Earth and Space Science, 11, https://doi.org/10.1029/2023EA003133.
[5].Yin P.,Mu D., Xu T., He J.,2024. Water Storage Variations and Drought Propagation in Southern Europe with Additional Constraints of GNSS Horizontal Displacements,IEEE Transactions on Geoscience and Remote Sensing, DOI: 10.1109/TGRS.2024.3496731.
[6].Yang Y.,Mu D.*, et al.,2023. Understanding the cause of sea level rise along coastal zone for 2005–2021.Environmental Research Communications, 5, 041001,https://doi.org/10.1088/2515-7620/acc91d.
[7].Yin P.,Mu D.*, Xu T.,2023. Water Storage Variations Recovered from Global Navigation Satellite System Network Using Spatial Constraints: A Case Study of the Contiguous United States,Remote Sensing, 5, 5753. https://doi.org/10.3390/rs15245753.
[8].Mu D., Xu T., Guan M.,2022. Sea level instantaneous budget for 2003–2015,Geophysical Journal International, 229, 828–837.
[9].Yang Y., Feng W., Zhong M.,Mu D.*, et al.,2022. Basin-Scale Sea Level Budget from Satellite Altimetry, Satellite Gravimetry, and Argo Data over 2005 to 2019.Remote Sensing, 14, 4637. https://doi.org/10.3390/rs14184637.
[10].Mu D., Xu T. Xu G.,2020, An investigation of mass changes in the Bohai Sea observed by GRACE,Journal of Geodesy, 94:79, https://doi.org/10.1007/s00190-020-01408-1.
[11].Mu D., Xu T., Xu G.,2020, Improved Arctic Ocean Mass Variability Inferred from Time-Variable Gravity with Constraints and Dual Leakage Correction,Marine Geodesy, 43:3, 269–284.
[12].Mu D., Xu T., Xu G.,2019, Detecting coastal ocean mass variations with GRACE mascons,Geophysical Journal International, 217, 2071–2080.
[13].Mu D.,2018. Instantaneous Rate of Ice Mass Changes in Antarctica Observed by Satellite Gravimetry,IEEE Geoscience and Remote Sensing Letters, 15(6), 823–827.
[14].Mu D., Yan H., Feng W.,2018. Assessment of sea level variability derived by EOF reconstruction,Geophysical Journal International, 214, 79–87.
[15].Mu D., Yan H., Feng W., Peng P.,2017. GRACE leakage error correction with regularization technique: case studies in Greenland and Antarctica,Geophysical Journal International, 208, 1775–1786.
[16].穆大鹏,闫昊明,2018.全球平均海平面上升的瞬时速率,地球物理学报, 61, 4758–4766.
申请专利:
利用验潮站记录推测海水质量变化的数据同化方法及系统, 2024100382476
指导研究生:2025届何家毅
指导本科毕业设计:2023届邱喜闻;2025届李领路