地震大地测量软件研制及应用任务书

 2021-10-27 10:10

1. 毕业设计(论文)的内容和要求

地震及其引起的次生灾害严重威胁着人们的生命和财产安全,准确、快速的地震破裂成像对防震减灾和地震危险性评估至关重要。

因此,本毕业设计基于MATLAB平台,研制和开发地震大地测量反演软件,该软件支持可视化操作,建立复杂构造几何模型,并利用大地测量数据(包括 GPS,水准,InSAR和偏移量等)快速地对地震破裂机制进行成像和分析。

本毕业设计研究的内容和要求包括:1、熟练MATLAB软件。

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2. 参考文献

[1] Fang, Z., Jiang, G., Xu, C., rgmann, R., Liu, L., Jiang, G. (2019). Changes in groundwater level possibly encourage shallow earthquakes in central Australia: The 2016 Petermann Ranges earthquake. Geophysical Research Letters, 46(6), 3189-3198.[5] Wang, S., Xu, C., Xu, W., Yin, Z., Wen, Y., Jiang, G. (2018). The 2017 M w 6.6 Poso Earthquake: Implications for Extrusion Tectonics in Central Sulawesi. Seismological Research Letters, 90(2A), 649-658.[6] Wang, S., Xu, C., Li, Z., Wen, Y., Song, C. (2019). The 2018 Mw 7.5 Papua New Guinea earthquake: A possible complex multiple faults failure event with deep‐seated reverse faulting. Earth and Space Science.[7] Niu, Y., Wang, S., Zhu, W., Zhang, Q., Lu, Z., Zhao, C., Qu, W. (2020). The 2014 Mw 6.1 Ludian Earthquake: The Application of RADARSAT-2 SAR Interferometry and GPS for this Conjugated Ruptured Event. Remote Sensing, 12(1), 99.[8] Guo, Z., Wen, Y., Xu, G., Wang, S., Wang, X., Liu, Y., Xu, C. (2019). Fault Slip Model of the 2018 Mw 6.6 Hokkaido Eastern Iburi, Japan, Earthquake Estimated from Satellite Radar and GPS Measurements. Remote Sensing, 11(14), 1667.[9] Wang, X., Xu, C., Wen, Y., Wang, S., Xu, G., Xiao, Z., Fang, L. (2019). The 2016 Mw 6.0 Hutubi earthquake: A blind thrust event along the northern Tian Shan front. Journal of Asian Earth Sciences, 173, 79-87.[10] 许才军,邓长勇,周力璇,基于方差分量估计的地震同震滑动分布反演,武汉大学学报信息科学版,2016,41(1):37 -44

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