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Items where contributor is "Spiske, Michaela"

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Spiske, Michaela and Pilarczyk, Jessica and Mitchell, Stephen and Halley, Robert. (2019) Sedimentary and erosional features caused by hurricane Irma. In: INQUA program book.

Spiske, Michaela and Tang, Hui and Bahlburg, Heinrich. (2019) Physical and chemical alteration of onshore tsunami deposits - implications for inverse modelling tsunami deposits. In: AGU Fall Meeting.

Jaffe, Bruce and Buckely, Mark L. and Pilarczyk, Jessica and Spiske, Michaela and Watt, Steven G. and Mitchell, Stephen. (2019) Sedimentary evidence of tsunamis impacting Anegada, British Virgin Islands. In: AGU Fall Meeting.

Yes

Mitchell, Stephen and Pilarczyk, Jessica E. and Spiske, Michaela and Jaffe, Bruce. (2021) Nearshore microfossil assemblages in a Caribbean reef environment show variable rates of recovery following Hurricane Irma. Sedimentology. SED.12944.

Spiske, Michaela and Pilarczyk, Jessica and Mitchell, Stephen and Halley, Robert and Otai, Tiffany. (2021) Coastal erosion and sediment reworking caused by Hurricane Irma - implications for storm impact on low-lying tropical islands. Earth Surface Processes and Landforms. esp.5293.

Spiske, Michaela and Tang, Hui and Bahlburg, Heinrich. (2020) Post-depositional alteration of onshore tsunami deposits - Implications for the reconstruction of past events. Earth Science Reviews, 202. p. 103068.

Spiske, M. and Garcia Garcia, A. -M. and Tsukamoto, S. and Schmidt, V.. (2020) High-energy inundation events versus long-term coastal processes - room for misinterpretation. Sedimentology, 67 (3). pp. 1460-1480.

Spiske, Michaela. (2020) The sedimentology and geometry of fine-grained tsunami deposits in onshore environments. In: Geological Records of Tsunamis and Other Extreme Waves. Amsterdam, pp. 213-238.

Goff, James and Witter, Rob and Terry, James and Spiske, Michaela. (2020) Palaeotsunamis in the Sino-Pacific region. Earth-Science Reviews, 210. p. 103352.

Bellanova, P. and Bahlburg, H. and Nentwig, V. and Spiske, M.. (2016) Microtextural analysis of quartz grains of tsunami and non-tsunami deposits – a case study from Tirúa (Chile). Sedimentary Geology, 343. 72–84.

Bahlburg, Heinrich and Spiske, Michaela. (2015) Styles of early diagenesis and the preservation potential of onshore tsunami deposits – a resurvey of Isla Mocha, Central Chile, 2 years after the February 27, 2010 Maule tsunami. Sedimentary Geology, 326. pp. 33-44.

Spiske, Michaela and Bahlburg, Heinrich and Weiss, Robert. (2014) Pliocene mass failure deposits mistaken as submarine tsunami backwash sediments – an example from Hornitos, Northern Chile. Sedimentary Geology, 305. pp. 69-82.

Spiske, Michaela and Piepenbreier, Jens and Benavente, Carlos and Bahlburg, Heinrich. (2013) Preservation potential of tsunami deposits on arid siliciclastic coasts. Earth Science Reviews, 126. pp. 58-73.

Spiske, Michaela and Piepenbreier, Jens and Benavente, Carlos and Kunz, Alexander and Bahlburg, Heinrich and Steffahn, Jens. (2013) Historical tsunami deposits in Peru: Sedimentology, inverse modeling and optically stimulated luminescence dating. Quaternary International, 305. pp. 31-44.

Bahlburg, Heinrich and Spiske, Michaela. (2012) Sedimentology of tsunami inflow and backflow deposits: key differences revealed in a modern example. Sedimentology, 59 (3). pp. 1063-1086.

Spiske, Michaela and Bahlburg, Heinrich. (2011) A quasi-experimental setting of coarse clast transport by the 2010 Chile tsunami (Bucalemu, Central Chile). Marine Geology, 289 (1-4). pp. 72-85.

Bahlburg, Heinrich and Spiske, Michaela and Weiss, Robert. (2010) Comment on "Sedimentary features of tsunami backwash deposits in a shallow marine Miocene setting, Mejillones Peninsula, northern Chile" by G. Cantalamessa and C. Di Celma [Sedimentary Geology 178 (2005) 259-273]. Sedimentary Geology, 228 (1-2). pp. 77-80.

Spiske, Michaela and Weiss, Robert and Bahlburg, Heinrich and Roskosch, Julia and Amijaya, Hendra. (2010) The TsuSedMod inversion model applied to the deposits of the 2004 Sumatra and 2006 Java tsunami and implications for estimating flow parameters of palaeo-tsunami. Sedimentary Geology, 224 (1-4). pp. 29-37.