Real-Time Source Modeling of the 2022 Mw 6.6 Menyuan, China Earthquake with High-Rate GNSS Observations
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Caijun Xu | Yangmao Wen | Lijiang Zhao | Zhicai Li | Jianfei Zang | Fei Yang | Shijie Fan | Xiuying Peng | Xing Zhou
[1] P. Zhang,et al. Rapid source models of the 2021 Mw 7.4 Maduo, China, earthquake inferred from high-rate BDS3/2, GPS, Galileo and GLONASS observations , 2022, Journal of Geodesy.
[2] Lijiang Zhao,et al. First results using high-rate BDS-3 observations: retrospective real-time analysis of 2021 Mw 7.4 Madoi (Tibet) earthquake , 2022, Journal of Geodesy.
[3] S. Liao,et al. High-precision relocation of the aftershock sequence of the January 8, 2022, MS6.9 Menyuan earthquake , 2022, Earthquake Science.
[4] Jihong Liu,et al. Three-Dimensional Surface Displacements of the 8 January 2022 Mw6.7 Menyuan Earthquake, China from Sentinel-1 and ALOS-2 SAR Observations , 2022, Remote. Sens..
[5] Dun Wang,et al. Rapid report of the 8 January 2022 Ms 6.9 Menyuan earthquake, Qinghai, China , 2022, Earthquake Research Advances.
[6] Xinjian Shan,et al. Earthquake Magnitude Estimation from High-Rate GNSS Data: A Case Study of the 2021 Mw 7.3 Maduo Earthquake , 2021, Remote. Sens..
[7] Caijun Xu,et al. Rapid Earthquake Source Description Using Variometric-Derived GPS Displacements toward Application to the 2019 Mw 7.1 Ridgecrest Earthquake , 2021, Seismological Research Letters.
[8] B. Crowell. Near-Field Strong Ground Motions from GPS-Derived Velocities for 2020 Intermountain Western United States Earthquakes , 2021 .
[9] R. Fang,et al. Earthquake Magnitude Scaling Using Peak Ground Velocity Derived from High-Rate GNSS Observations , 2020 .
[10] Xingxing Li,et al. Scaling earthquake magnitude in real time with high-rate GNSS peak ground displacement from variometric approach , 2020, GPS Solutions.
[11] D. Melgar,et al. Real-Time High-Rate GNSS Displacements: Performance Demonstration during the 2019 Ridgecrest, California, Earthquakes , 2020 .
[12] D. Mencin,et al. Evaluation of Earthquake Magnitude Estimation and Event Detection Thresholds for Real-Time GNSS Networks: Examples from Recent Events Captured by the Network of the Americas , 2020 .
[13] Peizhen Zhang,et al. Examination of the repeatability of two Ms6.4 Menyuan earthquakes in Qilian-Haiyuan fault zone (NE Tibetan Plateau) based on source parameters , 2020 .
[14] Caijun Xu,et al. Real-time coseismic deformations from adaptively tight integration of high-rate GNSS and strong motion records , 2019, Geophysical Journal International.
[15] Xingxing Li,et al. Real-time capturing of seismic waveforms using high-rate BDS, GPS and GLONASS observations: the 2017 Mw 6.5 Jiuzhaigou earthquake in China , 2018, GPS Solutions.
[16] Yehuda Bock,et al. A Global Database of Strong‐Motion Displacement GNSS Recordings and an Example Application to PGD Scaling , 2018, Seismological Research Letters.
[17] Chuang Shi,et al. Very high-rate GPS for measuring dynamic seismic displacements without aliasing: performance evaluation of the variometric approach , 2018, GPS Solutions.
[18] Jianghui Geng,et al. Hypothetical Real‐Time GNSS Modeling of the 2016 Mw 7.8 Kaikōura Earthquake: Perspectives from Ground Motion and Tsunami Inundation PredictionHypothetical Real‐Time GNSS Modeling of the 2016 Mw 7.8 Kaikōura Earthquake , 2018 .
[19] Maorong Ge,et al. Retrieving real-time co-seismic displacements using GPS/GLONASS: a preliminary report from the September 2015 Mw 8.3 Illapel earthquake in Chile , 2016 .
[20] Sarah E. Minson,et al. Demonstration of the Cascadia G‐FAST Geodetic Earthquake Early Warning System for the Nisqually, Washington, Earthquake , 2016 .
[21] Yidong Lou,et al. High-rate (1-Hz and 50-Hz) GPS seismology: Application to the 2013 Mw 6.6 Lushan earthquake , 2014 .
[22] Richard M. Allen,et al. Application of real‐time GPS to earthquake early warning in subduction and strike‐slip environments , 2013 .
[23] Xiaoji Niu,et al. High-rate precise point positioning (PPP) to measure seismic wave motions: an experimental comparison of GPS PPP with inertial measurement units , 2013, Journal of Geodesy.
[24] Takuji Ebinuma,et al. Dynamic characteristics of very-high-rate GPS observations for seismology , 2012, Earth, Planets and Space.
[25] Richard M. Allen,et al. Development of the ElarmS methodology for earthquake early warning: Realtime application in California and offline testing in Japan , 2011 .
[26] R. Fang,et al. Seismic deformation of the Mw 8.0 Wenchuan earthquake from high-rate GPS observations , 2010 .
[27] Robert S. Yeats,et al. Five Short Historical Earthquake Surface Ruptures near the Silk Road, Gansu Province, China , 2010 .
[28] Paul Bodin,et al. Using 1-Hz GPS Data to Measure Deformations Caused by the Denali Fault Earthquake , 2003, Science.