姓名 |
黄河 |
职称 |
副研究员 |
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性别 |
女 |
学位 |
博士 |
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电话 |
15501066309 |
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hehuang@ninhm.ac.cn |
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通讯地址 |
北京市海淀区安宁庄路1号(100085) |
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简历 黄河,应急管理部国家自然灾害防治研究院,硕士生导师 1987年生于吉林省吉林市 2006年9月-2010年7月 华北电力大学 信息与计算科学专业,学士学位 2010年9月-2016年7月 中国科学院地质与地球物理研究所 空间物理学专业,博士学位 2016年6月-2020年7月 中国科学院地质与地球物理研究所,博士后 2018年2月-2019年2月 美国Clemson University 物理天文系,访问学者 2020年8月-2023年2月 应急管理部国家自然灾害防治研究院,助理研究员 2023年2月-至今 应急管理部国家自然灾害防治研究院,副研究员 |
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任职: 张衡一号卫星电离层光度计主任设计师
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研究方向: 从事电离层建模、电子密度特征、赤道异常现象的高度经度变化及机理、空间天气等方面的研究 |
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学科类别: 地球物理学、空间物理学 |
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承担项目情况: 1. 国家自然科学基金-青年科学基金项目,电离层赤道异常的高度变化及经度结构,2018年1月-2020年12月,主持 2. 中国博士后科学基金面上项目,赤道异常现象的高度变化性研究,2016年11月-2018年11月,主持 3. 中央级公益性科研院所基本科研业务专项,基于张衡一号卫星和Swarm卫星观测的电离层赤道异常特征对比研究,2021年1月-2022年12月,主持 4. 北斗应急管理典型应用示范项目,2022年10月-2024年12月,参加 5. 科技部国家重点研发项目,张衡一号卫星在空间天气监测预警中的应用,2023年12月-2025年11月,参加 6. “973计划”项目课题,基于子午工程和双星计划的地球空间天气数值预报建模研究-120°E子午链上空电离层响应和应用模式,2012年1月-2016年8月,参加 7. 国家自然科学基金-重点项目,低纬电离层天气扰动特征及其对太阳风的响应,2013年1月-2017年12月,参加
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获得奖励:
2016年地球与行星全国博士后学术论坛优秀报告 2019年COSPAR Capacity Building Workshop: IRI 2019 Student Competition 1st Place Gold Award
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代表论著: [1]Huang, H., Lin, J., Xu, S., Le, H., Guo, F., Zeren, Z., et al. (2022). A 3D empirical model of electron density based on CSES radio occultation measurements. Space Weather, 20, e2021SW003018. https://doi.org/10.1029/2021SW003018 [2] He Huang, Rui Yan, Dapeng Liu, Song Xu, Jian Lin, Feng Guo, Jianping Huang, Zhima Zeren, Xuhui Shen (2022). The variations of plasma density recorded by CSES-1 satellite possibly related to Mexico Ms 7.1 earthquake on 8th September 2021. Natural Hazards Research, 2(1), 11-16. doi:https://doi.org/10.1016/j.nhres.2021.12.002 [3]Huang, H., X. Lu, L. Liu, W. Wang, and Q. Li (2018). Transition of Interhemispheric Asymmetry of Equatorial Ionization Anomaly during Solstices, J. Geophys. Res. Space Physics, 123, 10,283–10,300, doi:10.1029/2018JA026055. [4]Huang, H., Moses, M., Volk, A. E., Elezz, O. A., Kassamba, A. A., & Bilitza, D. (2021). Assessment of IRI-2016 hmF2 model options with digisonde, COSMIC and ISR observations for low and high solar flux conditions. Advances in Space Research, 68(5), 2093-2103. doi:10.1016/j.asr.2021.01.033 [5]Huang, H., L. Liu, Y. Chen, H. Le, and W. Wan (2016). A global picture of ionospheric slab thickness derived from GIM TEC and COSMIC radio occultation observations, J. Geophys. Res. Space Physics, 121, 867–880, doi: 10.1002/2015JA021964. [6]Huang, H., Y. Chen, L. Liu, H. Le, and W. Wan (2015). An empirical model of the topside plasma density around 600 km based on ROCSAT-1 and Hinotori observations, J. Geophys. Res. Space Physics, 120, 4052–4063, doi:10.1002/2014JA020940. [7]Zhima Zeren, Yanyan Yang, Rui Yan, Zhenxia Zhang, Jie Wang, He Huang, Song Xu, Hengxin Lu, Na Zhou (2024). Jianping Huang, The representative scientific results of the China Seismo-Electromagnetic Satellite, Earthquake Research Advances, 100314, doi.org/10.1016/j.eqrea.2024.100314. [8]Liu D., Zeren Z., Huang H., Yang D., Yan R., Wang Q., Shen X., Liu C., Guan Y. (2023). The Ionospheric Plasma Perturbations before a Sequence of Strong Earthquakes in Southeast Asia and Northern Oceania in 2018. Remote Sensing. 2023; 15(24):5735. doi.org/10.3390/rs15245735 [9]Jianping Huang, Qiao Wang, Rui Yan, Jian Lin, Shufan Zhao, Wei Chu, Xuhui Shen, Zhima Zeren, Yanyan Yang, Jing Cui, Hengxin Lu, Song Xu, Dapeng Liu, Feng Guo, Na Zhou, Qiao Tan, Wenjing Li, Jie Wang, Dehe Yang, He Huang (2023). Pre-seismic multi-parameters variations before Yangbi and Madoi earthquakes on May 21, 2021, Natural Hazards Research, 3(1), 27-34, doi.org/10.1016/j.nhres.2022.12.002 [10]Zhima Z, Yan R, Lin J, Wang Q, Yang Y, Lv F, Huang J, Cui J, Liu Q, Zhao S, Zhang Z, Xu S, Liu D, Chu W, Zhu K, Sun X, Lu H, Guo F, Tan Q, Zhou N, Yang D, Huang H, Wang J and Shen X (2022). The Possible Seismo-Ionospheric Perturbations Recorded by the China-Seismo-Electromagnetic Satellite. Remote Sensing. 14(4):905. https://doi.org/10.3390/rs14040905. [11]Qiao Wang, Jianping Huang, Shufan Zhao, Zeren Zhima, Rui Yan, Jian Lin, Yanyan Yang, Wei Chu, Zhenxia Zhang, Hengxin Lu, Song Xu, Dapeng Liu, Feng Guo, Na Zhou, Qiao Tan, Wenjing Li, He Huang, Jie Wang, Xiaoying Sun, Xuhui Shen (2022). The electromagnetic anomalies recorded by CSES during Yangbi and Madoi earthquakes occurred in late May 2021 in west China, Natural Hazards Research, 2(1), 1-10, doi.org/10.1016/j.nhres.2022.01.003. [12]Zhima ZEREN, Jianping HUANG, Dapeng LIU, Yanyan YANG, Rui YAN, Shufan ZHAO, Zhenxia ZHANG, Jian LIN, Jing CUI, Wei CHU, Qiao WANG, Hengxin LU, Song XU, Feng GUO, Dehe YANG, Na ZHOU, Qinqin LIU, He HUANG, Jie WANG, Qiao TAN, Wenjing LI, Fangxian LÜ, Keying ZHU, Xuhui SHEN (2022). Current Status and Main Scientific Outcomes of the CSES Mission, Chinese Journal of Space Science, 42(4), Pages 550-564, ISSN 0254-6124, https://doi.org/10.11728/cjss2022.04.yg06. [13]Dapeng Liu, Zhima Zeren, Xuhui Shen, Shufan Zhao, Rui Yan, Xiuying Wang, Chao Liu, Yibing Guan, Xinghong Zhu, Yuanqing Miao, Dehe Yang, He Huang, Feng Guo (2021). Typical ionospheric disturbances revealed by the plasma analyzer package onboard the China Seismo-Electromagnetic Satellite, Advances in Space Research, 68(9), 3796-3805, doi.org/10.1016/j.asr.2021.08.009. [14]Li, J., Chen, Y., Liu, L., Le, H., Zhang, R., Huang, H., & Li, W. (2021). Occurrence of Ionospheric Equatorial Ionization Anomaly at 840 km height observed by the DMSP satellites at solar maximum dusk. Space Weather, 19, e2020SW002690. doi.org/10.1029/2020SW002690 [15]Li, Q., Liu, L., He, M., Huang, H., Zhong, J., Yang, N., et al. (2021). A global empirical model of electron density profile in the F region ionosphere basing on COSMIC measurements. Space Weather, 19, e2020SW002642. doi.org/10.1029/2020SW002642 [16]Zhang, R., Le, H., Li, W., Ma, H., Yang, Y., Huang, H., et al. (2021). Multiple technique observations of the ionospheric responses to the 21 June 2020 solar eclipse. J. Geophys. Res. Space Physics, 126, e2020JA028450. doi.org/10.1029/2020JA028450 [17]Li, Q., Liu, L., Jiang, J., Li, W., Huang, H., Yu, Y., et al (2019). α‐Chapman Scale Height: Longitudinal Variation and Global Modeling. J. Geophys. Res. Space Physics, 124, 2083–2098, doi:10.1029/2018JA026286. [18]Li, Q., L. Liu, N. Balan, H. Huang, R. Zhang, Y. Chen, H., Le (2018), Longitudinal structure of the midlatitude ionosphere using COSMIC electron density profiles, J. Geophys. Res. Space Physics, 123, 8766–8777, doi:10.1029/2017JA024927. [19]Liu, L., H. Huang, Y. Chen, H. Le, B. Ning, W. Wan, and H. Zhang (2014), Deriving the effective scale height in the topside ionosphere based on ionosonde and satellite in situ observations, J. Geophys. Res. Space Physics, 119, 8472–8482, doi:10.1002/2014JA020505.
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专利与软件著作权: |
黄河
2025-04-13
发布者: