Probabilistic Seismic Hazard Assessment for Himalayan–Tibetan Region from Historical and Instrumental Earthquake Catalogs

Author:

Rahman M. Moklesur,Bai Ling,Khan Nangyal Ghani,Li Guohui

Funder

CAS-TWAS President Fellowship, 2014

National Nature Science Foundation of China

Publisher

Springer Science and Business Media LLC

Subject

Geochemistry and Petrology,Geophysics

Reference72 articles.

1. Abrahamson, N., Gregor, N., & Addo, K. (2016). BC hydro ground motion prediction equations for subduction earthquakes. Earthquake Spectra, 32(1), 23–44. doi: 10.1193/051712EQS188MR .

2. Abrahamson, N. A., Silva, W. J., & Kamai, R. (2014). Summary of the ASK14 ground motion relation for active crustal regions. Earthquake Spectra, 30(3), 1025–1055.

3. Ader, T., Avouac, J. P., Liu-Zeng, J., Lyon-Caen, H., Bollinger, L., Galetzka, J., et al. (2012). Convergence rate across the Nepal Himalaya and interseismic coupling on the Main Himalayan Thrust: Implications for seismic hazard. Journal of Geophysical Research: Solid Earth, 117(4), 1–16.

4. Aki, K. (1965). Maximum likelihood estimate of b in the formula log (N) = a − bM and its confidence limits. Bulletin of the Earthquake Research Institute, University of Tokyo, 43, 237–239.

5. Ambraseys, N. N., & Douglas, J. (2004). Magnitude calibration of north Indian earthquakes. Geophysical Journal International, 159(1), 165–206.

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