Tsunami Simulation Method Assimilating Ocean Bottom Pressure Data Near a Tsunami Source Region
Author:
Funder
Earthquake and Volcano Hazards Observation and Research Program
Publisher
Springer Science and Business Media LLC
Subject
Geochemistry and Petrology,Geophysics
Link
http://link.springer.com/article/10.1007/s00024-017-1697-5/fulltext.html
Reference16 articles.
1. Geist, E. L., Fritz, H. M., Rabinovich, A. B., & Tanioka, Y. (2016). Introduction to global tsunami science: past and future. Pure and Applied Geophysics. doi: 10.1007/978-3-319-55480-8_1 .
2. Gusman, R. G., Sheehan, A. F., Satake, K., Heidazadeh, M., Mulia, I. E., & Maeda, T. (2016). Tsunami data assimilation of Cascadia seafloor pressure gauge records from the 2012 Haida Gwaii earthquake. Geophysical Research Letters. doi: 10.1002/2016GL068368 .
3. Gusman, A. R., Tanioka, Y., Sakai, S., & Tsushima, H. (2012). Source model of the great 2011 Tohoku earthquake estimated from tsunami waveforms and crustal deformation data. Earth and Planetary Science Letters, 341, 234–242.
4. Kanazawa, T. (2013). Japan trench earthquake and tsunami monitoring network of cable-linked 150 ocan bottom observatories, and its impact to earth disaster science. Proceedings of the International Conference Underwater Technology. doi: 10.1109/UT.2013.6519911 .
5. Maeda, T., Obara, K., Shinohara, M., Kanazawa, T., & Uehira, K. (2015). Successive estimation of a tsunami wavefield without earthquake source data: a data assimilation approach toward real-time tsunami forecasting. Geophysical Research Letters, 42, 7923–7932. doi: 10.1002/2015GL065588 .
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