Proceedings of the 12th International INQUA meeting on paleoseismology, active tectonic and archaeoseismology
402 PATA Days 2024 source areas of large prehistoric northern Alpine earthquakes revealed by slope failures in lakes. Geology 34, 1005e1008. Talling, P. J. (2014). On the triggers, resulting flow types and frequencies of subaqueous sediment density flows in different settings. Mar. Geol. 352, 155–182 Kremer, K., Wirth, S. B., Reusch, A., Fäh, D., Bellwald, B., Anselmetti, F. S., ... & Strasser, M. (2017). Lake- sediment based paleoseismology: Limitations and perspectives from the Swiss Alps. Quaternary Science Reviews, 168, 1-18. Moernaut, J. et al. Lacustrine turbidites as a tool for quantitative earthquake reconstruction: New evidence for a variable rupture mode in south central Chile. J. Geophys. Res. 119, 1607–1633 (2014). Vasquez A & Foncea C. 2013. Geotechnical characteristics of glacial soil deposits at Punta Arenas in Chilean Patagonia. Conference: 18th International Conference on Soil Mechanics & Geotechnical Engineering Walther, Michael, and Ulrich Kamp. 2023. "Mountain Permafrost: A Reflection on the Periglacial Environment in Mongolia" Geosciences 13, no. 9: 274. https://doi. org/10.3390/geosciences13090274 Wilhelm, B. et al. Quantified sensitivity of small lake sediments to record historic earthquakes: Implications for paleoseismology. J. Geophys. Res. 121, 2–16 (2016). R E F E R E N C E S Baljinnyam, I ., A. Bayasgalan, B. A. Borisov, A. Cisternas, M. G. Dem’yanovich, L. Ganbaatar, V. M. Kochetkov, R. A. Kurushin, P. Molnar, H. Philip, and Y. Vashchilov (1993). Ruptures of major earthquakes and active deformation in Mongolia and its surroundings, Geol. Soc. Am. Memoir 181, 61. Bertran, P., Font, M., Giret, A., Manchuel, K., Sicilia, D. (2019a). Experimental soft‐sediment deformation caused by f luidization and intrusive ice melt in sand. Sedimentology, 66, 1102-1117. Choi, J.-H., Klinger, Y., Ferry, M., Ritz, J.-F., Kurtz, R., Rizza, M., ... Demberel, S. (2018). Geologic inheritance and earthquake rupture processes: The 1905 M ≥ 8 Tsetserleg- Bulnay strike-slip earthquake sequence, Mongolia. Journal of Geophysical Research: Solid Earth, 123. https: //doi. org/10.1002/ 2017JB013962 Rizza, M., Ritz, J.-F., Prentice, C., Vassallo, R., Braucher, R., Larroque, C., ... ASTER Team (2015). Earthquake geology of the Bulnay fault (Mongolia). Bulletin of the Seismological Society of America, 105(1), 72–93. Schlupp, A., and A. Cisternas (2007). Source history of the 1905 great Mongolian earthquakes (Tsetserleg, Bolnay), Geophys. J. Int. 169, 1115–1131. Strasser, M., Anselmetti, F.S., Fa€h, D., Giardini, D., Schnellmann, M., 2006. Magni- tudes and
Made with FlippingBook
RkJQdWJsaXNoZXIy Mzc3MTg=