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297 results on '"Lushan earthquake"'

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1. Analysis of historical evolution characteristics and collapse process on July 18, 2023, of a dangerous rock mass at Guanyinyan in Baoxing County, Sichuan Province, China.

2. Slip distribution inversion of seismic sub-fault dip iteration using gradient based optimizer algorithm

3. Electrical Structure of Southwestern Longmenshan Fault Zone: Insights into Seismogenic Structure of 2013 and 2022 Lushan Earthquakes.

4. An Infinite Slope Model Considering Unloading Joints for Spatial Evaluation of Coseismic Landslide Hazards Triggered by a Reverse Seismogenic Fault: A Case Study of the 2013 Lushan Earthquake.

6. Preliminary Discussion on Site Effect of Strong Earthquake Stations in Lushan M6.1 Earthquake

8. Qualitative Analyses of Correlations between Strong Ground Motions of the Three Large Earthquakes and Landslide Distributions.

9. Electrical Structure of Southwestern Longmenshan Fault Zone: Insights into Seismogenic Structure of 2013 and 2022 Lushan Earthquakes

10. Bayesian Inversion of Finite‐Fault Earthquake Slip Model Using Geodetic Data, Solving for Non‐Planar Fault Geometry, Variable Slip, and Data Weighting.

11. Preliminary Analysis of Coseismic Landslides Induced by the 1 June 2022 Ms 6.1 Lushan Earthquake, China.

12. Seismotectonics of the 2013 Lushan Mw 6.7 Earthquake—A Hidden Earthquake

13. Rapid report of June 1, 2022 MW 5.9 Lushan earthquake, China with geodetic and teleseismic data

14. 川滇地区典型强震诱发滑坡分布对比研究.

15. Land Cover Changing Pattern in Pre- and Post-Earthquake Affected Area from Remote Sensing Data: A Case of Lushan County, Sichuan Province.

16. In situ stress state and seismic hazard in the Dayi seismic gap of the Longmenshan thrust belt.

17. 地震诱发滑坡空间分布概率近实时预测研究——以2022年6月1日四川芦山地震为例.

18. Quadratic Stress Drop Model of the 2013 Mw 6.6 Lushan Earthquake and Aftershocks Triggered by Blind Thrust Events.

20. Borehole Strain Observations Based on a State-Space Model and ApNe Analysis Associated With the 2013 Lushan Earthquake

21. Analysis of the Seismic Vulnerability of Buildings in the Lushan Ms7.0 Earthquake in the Sichuan Province of China.

22. Crustal deformation characteristics in the southwest segment of the Longmenshan structural belt before Lushan Mw6.6 earthquake and seismogenic structural model.

25. 地震重灾区农户灾害风险认知与撤离意愿和 搬迁意愿:来自中国四川的证据.

26. Community resilience and resident's disaster preparedness: evidence from China's earthquake-stricken areas.

27. Land Cover Changing Pattern in Pre- and Post-Earthquake Affected Area from Remote Sensing Data: A Case of Lushan County, Sichuan Province

28. Study on Impact Factor of Quality of Life Among Adult After the Lushan Earthquake

29. The spatial distribution characteristics of coseismic landslides triggered by the Ms7.0 Lushan earthquake and Ms7.0 Jiuzhaigou earthquake in southwest China.

30. Debris flows in the Lushan earthquake area: formation characteristics, rainfall conditions, and evolutionary tendency.

31. The continued operation of businesses after an earthquake: a case study from Lushan County, China.

32. Spatial and Temporal Variations in Earthquake Stress Drops between the 2008 Wenchuan and 2013 Lushan Earthquakes.

33. Rebuilding resilient homeland: an NGO-led post-Lushan earthquake experimental reconstruction program.

36. Structural geometry and active faulting along the southern segment of the Longmenshan thrust belt: Insights into the seismotectonics of the 1327 Tianquan and 2013 Lushan earthquakes (eastern Tibetan Plateau, China).

38. Extrusion deformation process of ground surface during the Lushan earthquake in China

41. Investigating the Contribution of Stress Drop to Ground-Motion Variability by Simulations Using the Stochastic Empirical Green's Function Method.

42. 大地测量地震断层同震滑动分布反演的两步解法.

43. Numerical simulation of ground motion amplification in Modong area, Lushan.

44. The seismogenic structure of the southern segment of the Longmen Shan thrust belt, eastern Tibetan Plateau, SW China: A comprehensive analysis of surface geology and deep structure.

45. Viscoelastic behavior of the crust around the Longmenshan Thrust Belt inferred from post-seismic deformation of the 2013 Lushan earthquake, China.

46. 2013年芦山Ms 7.0级地震断层参数模型反演.

47. Assessment of co-seismic landslide hazard using the Newmark model and statistical analyses: a case study of the 2013 Lushan, China, Mw6.6 earthquake.

48. Lessons from the seismic behavior of a steel grid roof structure heavily damaged in Lushan earthquake.

49. 汶川、芦山地震前龙门山断裂带 地壳形变特征对比分析.

50. Coseismic displacement estimate of the 2013 M S7.0 Lushan, China earthquake based on the simulation of near-fault displacement field

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