Sedimentary evidence for a mid-Holocene iceberg-generated tsunami in a coastal lake, west Greenland


Autoria(s): Long, Antony J.; Szczuciński, Witold; Lawrence, Thomas
Data(s)

16/06/2016

16/06/2016

01/12/2015

Resumo

We report sedimentological evidence for a tsunami from a coastal lake at Innaarsuit, Disko Bugt (west Greenland), which was most likely generated by a rolling iceberg. The tsunami invaded the lake c. 6000 years ago, during a period of time when relative sea level (RSL) was falling quickly because of isostatic rebound. We use the background rate of RSL fall, together with an age model for the sediment sequence, to infer a minimum wave run-up during the event of c. 3.3 m. The stratigraphic signature of the event bears similarities to that described from studies of the early-Holocene Storegga slide tsunami in Norwegian coastal basins. Conditions conducive to iceberg tsunami include a supply of icebergs, deep water close to the shore, a depositional setting protected from storms or landslide tsunami, and a coastal configuration that has the potential to amplify the height of tsunami waves as water depths shallow and the waves approach and impact the coast. Future warming of polar regions will lead to increased calving and iceberg production, at a time when human use of polar coasts will also grow. We predict, therefore, that iceberg-generated tsunami will become a growing hazard in polar coastal waters, especially in areas adjacent to large, fast-flowing, marine-terminating ice streams that are close to human populations or infrastructure.

Polish National Science Centre grant No. 2011/01/B/ST10/01553; NERC ARCICE thematic programme (GST022189); NERC Radiocarbon Dating Allocation No. 836.1299.

Identificador

Arktos vol. 1: 6, 2015, 16 pages

2364-9453

http://hdl.handle.net/10593/14733

Idioma(s)

eng

Direitos

info:eu-repo/semantics/openAccess

Palavras-Chave #Iceberg #tsunami #isolation basin #coastal lake #relative sea level #natural hazard #Greenland #Arctic #lake sediments #tsunami deposits #diatoms #geohazards
Tipo

Artykuł