徐慧茹

基本信息Personal Information

副教授 硕士生导师

性别 : 女

毕业院校 : 中国科学院地质与地球物理研究所

学历 : 博士研究生

学位 : 理学博士学位

在职信息 : 在职

所在单位 : 地球物理与空间信息学院

入职时间 : 2015年07月01日

联系方式 : zhuiri2080@163.com;xuhuiru@cug.edu.cn

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个人简介Personal Profile

徐慧茹

副教授,硕士生导师

自然资源部高层次科技创新人才工程青年科技人才入选者,中国地质大学(武汉)地大学者“青年优秀人才入选者。

 

研究兴趣:

1)古地磁(磁组构,构造磁学,磁强度)

2)大地构造(板块古地理重建)

3)岩石物性(磁性)

研究方向为地质学和地球物理学交叉学科,欢迎报考研究生。


教育经历:

20096月毕业于中国地质大学(武汉)地质学(基地班)专业,学士学位;

20157月毕业于中国科学院地质与地球物理研究所地球动力学专业,博士学位;

2013/12-2014/12,美国佛罗里达大学,留学基金委联合培养博士生;


工作经历:

2015/07 - 2017/10,中国地质大学(武汉),地质学流动站,博士后;

2017/10 - 2019/12,中国地质大学(武汉)地空学院,讲师

2019/12 - 至今,中国地质大学(武汉)地空学院,副教授


科研项目:

国家自然科学基金委面上基金,“元古代时期地球磁场强度研究及其对地球早期演化的指示”,2020/01-2023/12,主持;

中央高校基本科研业务费专项资金,“华北克拉通古元古代基性岩墙群磁性特征研究”,2018/01-2021/12,主持;

国家自然科学基金委青年基金,“华北克拉通前寒武纪基性岩墙的古地磁研究”,2017/01-2019/12,主持;

“地球内部多尺度成像”湖北省重点实验室开放基金,“吕梁地区古元古代末期基性岩墙的磁组构特征及其对侵位机制的启示”,2018/01-2019/12,主持;

中国博士后科学基金面上资助,“华北克拉通南缘早元古代熊耳火山岩磁组构研究”,2016/01-2017/12,主持;


科研论文:

1) Li, G.-M., W.-T. Ji, G.-Q. Xiao, H.-R. Xu*, Y. Liang, Y.-M. Lai, J.-G. Du, X.-Q. Li, and J.-Q. Wu, 2024. An integrated chronological study on the Quaternary sedimentary sequences of the Yangtze River delta, China, Palaeogeogr., Palaeoclimatol., Palaeoecol., 641, 112135.

2)Xu, H.-R., Joseph G. Meert*, Manoj K. Pandit, 2022. Age of the Marwar Supergroup, NW India: A note on the U–Pb geochronology of Jodhpur Group felsic volcanics. Geoscience Frontiers, 13, 101287.

3) Xu H.-R.*, T. Yang, M. J. Dekkers, P. Peng, S.-H. Li, C.-L. Deng, R.-X. Zhu, 2020. Magma flow pattern of the 1.78 Ga dyke swarm of the North China Craton during the initial assembly of the Supercontinent Nuna/Columbia: Constraints from rock magnetic and anisotropy of magnetic susceptibility studies, Precambrian Research, 345, 105773.

4) Xu H.-R.*, Z.-Y. Yang, P. Peng, K.-P. Ge, Z.-M. Jin, R.-X. Zhu, 2017. Magnetic fabrics and rock magnetism of the Xiong'er volcanic rocks and their implications for tectonic correlation of the North China Craton with other crustal blocks in the Nuna (Columbia) supercontinent. Tectonophysics, 712-713, 415-425.

5) Xu H.-R.*, Z.-Y. Yang, P. Peng, K.-P. Ge, R.-X. Zhu, 2016. Magnetic Fabric Studies of Xiong'er Volcanic Rocks in Southern Margin of the North China Craton and its Implications. Acta Geologica Sinica (English Edition) 90, 167.

6) Xu H.-R.*, Z.-Y. Yang, P., Peng, Joseph G. Meert, R.-X. Zhu, 2014. Paleo-position of the North China craton within the supercontinent Columbia: Constraints from new paleomagnetic results. Precambrian Research 255, Part 1, 276-293.


7) Sun, Y.-Y., C.-H. Chen, X. N. Su, J. Wang, T. Yu, H.-R. Xu, and J.-Y. Liu, 2023. Occurrence of Nighttime Irregularities and Their Scale Evolution in the Ionosphere Due To the Solar Eclipse Over East Asia on 21 June 2020, Journal of Geophysical Research: Space Physics, 128(2), e2022JA030936

8) Peng, P., H.-R. Xu, R. N. Mitchell, W. Teixeira, U. Kirscher, Z.-Y. Qin, E. P. Oliveira, V. A. V. Girardi, C. Wang, and F. Chemale, 2022. Earth's oldest hotspot track at ca. 1.8 Ga advected by a global subduction system, Earth Planet. Sci. Lett., 585, 117530

9) Sun, Y.-Y., Chen, C.-H., Zhang, P.-Y., Li, S., Xu, H.-R., Yu, T., Lin, K., Mao, Z.-Q., Zhang, D.-X., Lin, C.-Y., Liu, J.-Y., 2022. Explosive Eruption of the Tonga Underwater Volcano Modulates the Ionospheric E-Region Current on 15 January 2022. Geophys. Res. Lett. 49, e2022GL099621.

10)Peng, P., Xu, H.-R., Wang, C., Su, X.-D., Sun, F.-B., Wang, X.-P., 2021. Spatiotemporal evolution of large igneous provinces and their related rifts in North China craton: Role in craton breakup and destruction. Geological Society, London, Special Publications 518, SP518-2021-2045.

11) Sun, Y.-Y., C.-H. Chen, H.-Y. Qing, R. Xu, X.-N. Su, C.-H. Jiang, T. Yu, J. Wang, H.-R. Xu, and K. Lin, 2021. Nighttime ionosphere perturbed by the annular solar eclipse on 21 June 2020, Journal of Geophysical Research: Space Physics, n/a(n/a), e2021JA029419.

12) Yang T.*, J.-Y. Chen, H.-R. Xu, and M. J. Dekkers, 2019. High-Velocity Friction Experiments Indicate Magnetic Enhancement and Softening of Fault Gouges During Seismic Slip, Journal of Geophysical Research: Solid Earth, 124(1), 26-43.

13) Yang T.*, X.-X. Zhao, K. Petronotis, M. J. Dekkers, H.-R. Xu, 2019. Anisotropy of Magnetic Susceptibility (AMS) of Sediments From Holes U1480E and U1480H, IODP Expedition 362: Sedimentary or Artificial Origin and Implications for Paleomagnetic Studies, Geochemistry, Geophysics, Geosystems, 20(11), 5192-5215.

14) Sun L., C.-L. Deng*, X.-M. Wang, Q. Li, H.-F. Qin, H.-R. Xu, Y.-F. Kong, B.-L. Wu, S.-Z. Liu, R.-X. Zhu, 2018. Magnetostratigraphic dating of the late Miocene Baogeda Ula Formation and associated fauna in central Inner Mongolia, northern China, Palaeogeography, Palaeoclimatology, Palaeoecology, 505, 243-255.

15) 葛坤朋*, 章强新徐慧茹华南铀矿床岩石磁学差异分析及其勘探意义[J]. 东华理工大学学报:自然科学版, 2018, 41(03):210-217.





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