论文奖励:
[01] 2015年发表在《科学通报》的论文“GPS观测的2015年尼泊尔Ms 8.1级地震震前应变积累及同震变形特征”入选最佳封面论文.
一作或通讯:
[1]Xiaoning SU, Jiali HUANG, Zufeng LI, Guojie MENG, Guoqiang ZHAO. 2025. Geodetic Observations Revealing Crustal Deformation and Tectonic Transition in the Northeastern Nam Co Region, Southeastern Tibet.Geophysical Journal International.
[2]Hui ZHANG, Xiaoning SU#, Hongwei WANG, Xinghai DANG. 2025. Prediction method for coal mine surface deformation based on SBAS-InSAR technology: A case study of the Gulianhe coal mine in China. Bulletin of Engineering Geology and the Environment.
[3]Dan YANG, Xiaoning SU#, Jiale HUANG, Xin JIN, Zhiyu GAO. 2025. Revealing Crustal Deformation and Fault Slip Behavior of the Northern Qaidam-West Qinling Tectonic Belt through Gnss-InSAR Integration. Geophysical Journal International.
[4]虞思晗, 苏小宁#, 黄家乐, 杨丹, 孟国杰, 李振洪. 2025. 融合GNSS/InSAR的海原断裂中东段滑动速率与应变分配特征. 地球物理学报.
[5]杨雯雅, 苏小宁#, 赵立, 何月帆. 2025. 基于GNSS时序非构造负荷优化模型的青藏高原东北隅垂向形变. 地球物理学报.
[6]孔德强, 苏小宁#, 张健, 张辉, 刘雷, 闫志高. 2025 岩石圈粘弹性结构对走滑断裂震间闭锁特征影响的数值模拟研究. 地球物理学报.
[7]袁金凤, 苏小宁, 李毓照, 李祖锋. 2025. BDS 多频周跳探测与修复自适应阈值确定方法. 导航定位学报.
[8]王东升,苏小宁#,孟国杰. 2025. 单北斗系统应用于地壳运动中的高精度定位性能分析. 地震工程学报.
[9]Xiaoning SU#, Sihan YU, Dan Yang, Qian ZHAO#. 2025. Interpreting the crustal deformation and the spatial distribution of major earthquakes in the northeastern Tibetan Plateau using an enhanced block model. Geophysical Journal International, 241(3): 1810–1822, doi: 10.1093/gji/ggaf130.
[10]Jinfeng YUAN, Xiaoning SU# , Yuzhao LI. 2025. Enhanced BDS four-frequency cycle slip detection and repair using fuzzy clustering analysis. Geodesy and Geodynamics.
[11]Chen YANG, Xiaoning SU#, Zhiyu GAO, Ruixiong KOU. 2025. Rapid estimation of source parameters for the 2022 Mw 6.6 Menyuan earthquake with combined high-rate GNSS and strong motion data in Northeastern Tibet. Terrestrial, Atmospheric and Oceanic Sciences.doi:10.1007/s44195-024-00083-5.
[12]杨宸, 苏小宁#, 高志钰, 黄传超. 2025.多源数据联合反演的2022年门源MW6.6地震同震破裂特征. 地震, 45(01): 93-110.
[13]赵立, 苏小宁#, 何月帆, 石睿娟. 2025. 顾及非构造形变效应的青藏高原东北隅GNSS地壳垂直变形特征. 地球物理学报, 68(5): 1678-1694, doi: 10.6038/cjg2024S0192.
[14]王东升,苏小宁#,吴伟伟,袁金凤,寇瑞雄. 2024. 北斗大规模区域网观测数据高精度解算影响因素分析.中国地震, 40(4): 831-847.
[15]Xiaoning SU#, Qinghua BAO, Zhiyu GAO, Jiale HUANG. 2024. Three-dimensional Interseismic Crustal Deformation in the Northeastern margin of the Tibetan Plateau Using GNSS and InSAR. Journal of Asian Earth Sciences. doi: 10.1016/j.jseaes.2024.106328.
[16]Xiaoning SU#, Qinghua BAO, Ruijuan SHI, Yuefan HE. 2024. Physical Mechanism-Driven Extraction Model for Post-Seismic Deformation Recorded by Continuous GPS Observations. Advances in Space Research,doi: 10.1016/j.asr.2024.07.025.
[17]Qinghua BAO, Xiaoning SU#. 2024. Complex fault geometry and slip distribution of 2022 Mw 6.6 Menyuan, China, earthquake from joint inversion of GNSS and InSAR observations. Geosciences Journal,doi: 10.1007/s12303-024-0020-6.
[18]张京中,苏小宁#,孟国杰,鲍庆华,黄家乐,孔德强,赵天祥. 2024. 融合InSAR/GPS观测资料的2017年九寨沟Ms7.0地震同震变形特征. 地震,44(4):116-130.
[19]郭安宁, 苏小宁#, 浦小武. 2024. 2023年12月18日甘肃积石山6.2级地震及启示. 科学技术与工程, 24(8): 3072-3085.
[20]徐炜祥,苏小宁#,虞思晗,朱庆. 2024. 青藏高原东北隅断层活动及地壳变形模式,地球物理学报,67(7):2596-2611,doi:10.6038/cjg2024R0475.
[21]赵天祥,苏小宁#,朱庆,赵国强. 2024. GPS观测的嘉黎断裂西段典型构造区域地壳变形特征, 测绘科学,39(03): 37-35
[22]黄家乐, 苏小宁#,石睿娟,鲍庆华,赵立,徐炜祥 . 2024. 基于 PS⁃InSAR 技术的武威市地面沉降时空变化特征 . 地质科学,59(2), doi : 10.12017/dzkx.2024.000.
[23]石睿娟, 苏小宁#, 鲍庆华, 李毓照. 2024. 顾及随机特征的GNSS连续站坐标时间序列建模方法, 地球物理学报,67(6):2110-2124,doi:10.6038/cjg2023R0435.
[24]苏小宁,石睿娟,鲍庆华,朱庆#,孟国杰,闫浩文. GNSS连续观测站构造运动变化特征自适应提取方法. 测绘学报, 2023, 52(8):1245-1254, doi: 10.11947/j.AGCS.2023.20220675.
[25]Sihan Yu, Xiaoning Su#. A Crustal deformation pattern on the northeastern margin of the Tibetan Plateau derived from GPS observations, 2023, 15, 2095, Remote Sensing, doi: 10.3390/rs15112905.
[26]苏小宁#,熊仁伟,孟国杰,郭楠,杨维芳,李毓照,吴伟伟,赵国强. 2021年青海玛多Mw 7.3地震地壳变形及区域孕震环境.地球物理学报, 2022,65(3): 1032-1043,doi: 10.6038/cjg2022O0525.
[27]苏小宁#,朱庆,孟国杰,孙海丽,闫浩文. 顾及抗差性的GNSS多尺度地壳运动场构建方法.地球物理学报, 2022,65(9): 3363-3373,doi: 10.6038/cjg2022P0298.
[28]苏小宁#. 六盘山构造带应变积累特征及其变形机制研究. 测绘学报, 2021, 50(6): 847-847.
[29]Xiaoning Su, Guojie Meng#, Lina Su,Weiwei Wu, Tai Liu. Coseismic and Early Postseismic Deformation of the 2016 Mw 7.8 Kaikōura Earthquake, New Zealand, from Continuous GPS Observations.Pure and Appl. Geophysics, 2020, 177(1), doi: 10.1007/s00024-019-02169-5.
[30]Xiaoning Su, Lianbo Yao#, Guojie Meng. Postseismic Deformation of the Ms 8.1 Earthquake in 2015 from GPS Observations.Lecture Notes in Electrical Engineering, 2020.
[31]Su, X., Yao, L., Wu, W., Meng, G., Su, L., Xiong, R., & Hong, S. (2019). Crustal Deformation on the Northeastern Margin of the Tibetan Plateau from Continuous GPS Observations. Remote Sensing, 11(1), 34. doi: 10.3390/rs11010034.
[32]Su, X., Meng, G., Sun, H., & Wu, W. (2018). Positioning Performance of BDS Observation of the Crustal Movement Observation Network of China and Its Potential Application on Crustal Deformation. Sensors, 18(10), 3353. https://doi.org/10.3390/s18103353
[33]苏小宁,孟国杰.基于GPS观测的2015年尼泊尔Ms8.1地震多尺度震后形变特征.地震, 2018,38(04): 1-13.
[34]苏小宁,孟国杰.2016年青海门源Ms6.4地震震前应变积累及同震变形特征.地震, 2017,37(04): 1-9.
[35]苏小宁,孟国杰,石小娟,赵倩.用离散点观测资料解算走滑断层应变积累时的失真现象及其原因.地震, 2017,37(03): 22-27
[36]苏小宁,孟国杰#,王振.基于多尺度球面小波解算GPS应变场的方法及应用.地球物理学报, 2016,59(05): 1585-1595.
[37]苏小宁,王振,孟国杰#,徐婉桢,任金卫. GPS观测的2015年尼泊尔Ms 8.1级地震震前应变积累及同震变形特征.科学通报, 2015,60(22): 2115-2123.
[38]苏小宁,孟国杰,胡新康,赵国强,伍吉仓,任金卫.高频GPS单历元定位精度及噪声特征.大地测量与地球动力学, 2014,34(02): 150-154.
[39]苏小宁,孟国杰,廖华,张素灵.利用高频GPS数据研究汶川地震引起的近场地表运动学特征.大地测量与地球动力学, 2013,33(S1): 11-15.
[40]苏小宁,孟国杰,胡丛玮,伍吉仓.基于TRACK进行GPS单历元定位.大地测量与地球动力学, 2009, 29(03): 100-103.
共同作者:
[1]贺添, 孟国杰, 吴伟伟, 苏小宁, 赵国强, 魏聪敏, 董志华. 中国地震科学实验场BDS-3定位精度和地壳运动初步分析. 测绘学报, 2024, 53(4): 653-665.
[2]Zhou C. Y., Yang L., Su X. N., Li B. F. Neural Network-Based Ionospheric Modeling and Predicting—To Enhance High Accuracy GNSS Positioning and Navigation,2022, Advances in Space Research, doi : 10.1016/j.asr.2022.07.050.
[3]杨玲,周春元,苏小宁,李博峰. 附加IRI模型约束的全球电离层建模及定位精度分析. 同济大学学报(自然科学版), 2021,49(11),doi: 10. 11908/j. issn. 0253-374x. 21007.
[4]孙凯, 孟国杰, 洪顺英, 苏小宁, 黄星, 董彦芳, Hiroaki Takahashi, Mako Ohzono .联合InSAR和GPS研究鲜水河断裂带炉霍—道孚段震间运动特征. 地球物理学报 ,2021, 64(7): 2278-2296,doi: 10.6038/cjg2021O0364
[5]Meng Guojie,Xiaoning Su, Chieh-Hung Chen, Kai-Chien Cheng, Ta-Kang Yeh. Dominant Afterslip of the 2010 Mw 6.9 Yushu, Tibetan Plateau Earthquake as Derived from GPS Observations: Implication for Seismic Hazard Assessment.Pure Appl. Geophys, 2020, doi: 10.1007/s00024-020-02450-y(SCI).
[6]Fu Guangyu,Xiaoning Su,Yawen She, Tai Liu, Jun Li, Shanghua Gao. Evidence for normal and deep-buried features of the Longquan Shan fault zone at the eastern margin of the Tibetan plateau.Journal of Asian Earth Sciences,2019,179(SCI).
[7]Meng Guojie,Xiaoning Su,Weiwei Wu, Nikolay S., Takahashi H., Ohzono M., Gerasimenko M. Crustal Deformation of Northeastern China Following the 2011 Mw 9.0 Tohoku, Japan Earthquake Estimated from GPS Observations: Strain Heterogeneity and Seismicity.Remote Sens., 2019, 11(24),3029,doi:10.3390/rs11243029(SCI).
[8]Jin Honglin, Yuan Gao,Xiaoning Su, Guangyu Fu. Contemporary crustal tectonic movement in the southern Sichuan-Yunnan block based on dense GPS observation data.Earth and Planetary Physics,2019,3(01):53-61.
[9]张四新, 苏小宁, 李鹏, 刘雷.震前突变—水准资料反映的2013年岷县-漳县Ms6.6地震孕震特征.大地测量与地球动力学,2019,39(08):771-776.
[10]于吉鹏,孟国杰,苏小宁,Nikolay Shestakov,Mikhail Gerasimenko,Hiroaki Takahashi,Mako Ohzono,刘泰,李承涛.基于GPS观测研究中国东北地区现今地壳形变特征.地震,2019,39(03):11-27.
[11]苏利娜,甘卫军,苏小宁,翟宏光,丁晓光,王利华.基于模型和空间相关性的GPS时间序列插值方法.大地测量与地球动力学,2019,39(06):620-624.
[12]苏利娜,甘卫军,张勇,苏小宁,赵倩.基于迭代PCA的GPS时间序列震后形变估计方法和应用.地球物理学报,2019,62(03):940-949(SCI).
[13]Meng Guojie,Xiaoning Su, Wanzhen Xu, Chieh-Hung Chen, Kai-Chien Cheng, Strong Wen, Ta-Kang Yeh, Peng Li, Mako Ohzono, and Hiroaki Takahashi. Present-day strain accumulation in the Liupan Shan area, northeastern margin of the Tibetan Plateau by GPS observations.Terr. Atmos. Ocean. Sci., Vol. 30, No. 1, 1-12, doi: 10.3319/TAO.2018.09.10.02(SCI).
[14]Wu Weiwei,Xiaoning Su, Guojie Meng, Chengtao Li. Crustal Deformation Prior to the 2017 Jiuzhaigou, Northeastern Tibetan Plateau (China), Ms 7.0 Earthquake Derived from GPS Observations.Remote Sens. 2018, 10(12), 2028, doi:10.3390/rs10122028(SCI).
[15]张四新,苏小宁,李鹏,刘雷.震前突变:水准资料反映的岷县-漳县Ms6.6地震孕震特征.国际地震动态,2018(08):145-146.
[16]赵倩,付广裕,刘泰,苏小宁.2011年日本Mw9.0地震引起的东北亚区域震后位移及其机理分析.国际地震动态,2018(08):32-33.
[17]叶茂盛,孟国杰,苏小宁.青藏高原东北缘主要断裂闭锁特征和滑动亏损研究.地震,2018,38(03):1-12.
[18]李承涛,苏小宁,孟国杰.巴颜喀拉块体东北缘GPS应变率空间分布特征及其与2017年九寨沟Ms7.0地震的关系.地震,2018,38(02):37-50.
[19]孟国杰, 苏小宁, 王振,廖华. 利用近场高频GPS、强地面运动和远场地震波形数据联合反演2008年汶川Ms8.0地震的震源时空破裂过程.地震,2018,38(02):11-27.
[20]刘泰,付广裕,周新,苏小宁.2011年日本MW9.0地震震后形变机制与震源区总体构造特征.地球物理学报,2017,60(09):3406-3417(SCI).
[21]刘泰,付广裕,苏小宁.利用粘弹性球体位错理论研究2011年日本Mw9.0地震引起的震后位移时空变化.地震,2017,37(03):1-11.
[22]孟国杰,苏小宁,徐婉桢,任金卫,杨永林,Nikolay V.Shestakov.基于GPS观测研究2010年青海玉树Ms7.1地震震后地壳形变特征及其机制.地球物理学报,2016,59(12):4570-4583(SCI).
[23]佘雅文,付广裕,苏小宁,孟国杰,祝意青,郭树松,徐云马.六盘山地区地壳重力均衡与隆升机制研究.地球物理学进展,2016,31(04):1464-1472.
[24]徐婉桢,孟国杰,苏小宁.基于GPS观测的六盘山断裂震间闭锁特征研究.地震,2016,36(03):14-24.
[25]Meng Guojie,Xiaoning Su,Weiwei Wu,Jinwei Ren,Yonglin Yang,Jicang Wu,Chieh-Hung Chen,Nikolay V.Shestakov.Heterogeneous strain regime in the eastern margin of Tibetan Plateau and its tectonic implications.Earthquake Science,2015,28(01):1-10.
[26]佘雅文,付广裕,苏小宁,孟国杰,祝意青,郭树松,徐云马.六盘山地区地壳重力均衡与隆升机制研究.国际地震动态,2015(09):80.
[27]李奇,孟国杰,张奎,苏小宁,戴娅琼,汪慧.基于分区解缠方式研究2010年玉树Mw6.9地震同震形变.地震,2015,35(03):22-30.
[28]吴伟伟,孟国杰,苏小宁,伍吉仓,胡新康,金红林.基于高斯距离加权格网法研究华北地区地壳形变特征. 大地测量与地球动力学, 2015, 35(01):7-12.
[29]朱泽,孟国杰,苏小宁,金红林,胡新康, Linlin Ge.利用块体-位错模型反演华北地区块体运动和断裂活动.大地测量与地球动力学,2014,34(04):39-42.
[30]赵国强,苏小宁.基于GPS获得的中国大陆现今地壳运动速度场.地震,2014,34(01):97-103.
[31]陈长云,任金卫,孟国杰,杨攀新,熊仁伟,胡朝忠,苏小宁,苏建峰.巴颜喀拉块体东部活动块体的划分、形变特征及构造意义.地球物理学报,2013,56(12):4125-4141(SCI).
[32]黄建平,石耀霖,苏小宁.环太平洋大震的时空特征分析.地震,2013,33(04):115-122.
[33]王振,孟国杰,横田佑助,苏小宁.利用1-Hz GPS波形数据反演2011年日本东北大地震震源破裂过程.地震,2013,33(03):13-23.
[34]陈长云,任金卫,孟国杰,张军龙,杨攀新,杨永林,苏小宁,苏建峰.巴颜喀拉块体北东地区现今水平运动与变形.地震,2012,32(04):73-82.
[35]陈长云,任金卫,孟国杰,杨攀新,张军龙,苏小宁.巴颜喀拉块体北东缘主要断裂现今活动性分析.大地测量与地球动力学,2012,32(03):27-30.

