Tsunamis are high energy events capable of transporting extremely heavy loads including boulders. We compare boulder deposits created by two modern tsunami events, the 2004 Indian Ocean and the 2009 South Pacific tsunamis, where the boulder sources were in similar topographic settings, and for which we have accurate data on the wave characteristics. Boulder distribution, preferential orientation and numerical simulation of boulder transport are discussed. A comparison between the impacts of the South Pacific and Indian Ocean tsunamis shows similar characteristics, such as limited landward extent and the absence of landward fining. Differences between the results from modelling and field data are most probably caused by variables such as coa...
Well-imbricated large boulders of quartzite, greater than 100 tonnes weight, occur along the crest o...
Well-imbricated large boulders of quartzite, greater than 100 tonnes weight, occur along the crest o...
Whatever the generating mechanism of a tsunami may be, this event can discharge destructive energy a...
Tsunamis are high energy events capable of transporting extremely heavy loads including boulders. We...
International audienceTsunamis are high energy events capable of transporting extremely heavy loads ...
International audienceTsunamis are high energy events capable of transporting extremely heavy loads ...
International audienceTsunamis are high energy events capable of transporting extremely heavy loads ...
International audienceTsunamis are high energy events capable of transporting extremely heavy loads ...
International audienceTsunamis are high energy events capable of transporting extremely heavy loads ...
Risks posed by sea-level rise and cyclones are becoming more prevalent along the world’s coastlines....
This paper is the first review of coastal boulder studies; it serves as a peer-reviewed introduction...
Research on tsunami-induced coarse-clast transport is a field of rising interest since such deposits...
This paper is the first review of coastal boulder studies; it serves as a peer-reviewed introduction...
Well-imbricated large boulders of quartzite, greater than 100 tonnes weight, occur along the crest o...
Whatever the generating mechanism of a tsunami may be, this event can discharge destructive energy a...
Well-imbricated large boulders of quartzite, greater than 100 tonnes weight, occur along the crest o...
Well-imbricated large boulders of quartzite, greater than 100 tonnes weight, occur along the crest o...
Whatever the generating mechanism of a tsunami may be, this event can discharge destructive energy a...
Tsunamis are high energy events capable of transporting extremely heavy loads including boulders. We...
International audienceTsunamis are high energy events capable of transporting extremely heavy loads ...
International audienceTsunamis are high energy events capable of transporting extremely heavy loads ...
International audienceTsunamis are high energy events capable of transporting extremely heavy loads ...
International audienceTsunamis are high energy events capable of transporting extremely heavy loads ...
International audienceTsunamis are high energy events capable of transporting extremely heavy loads ...
Risks posed by sea-level rise and cyclones are becoming more prevalent along the world’s coastlines....
This paper is the first review of coastal boulder studies; it serves as a peer-reviewed introduction...
Research on tsunami-induced coarse-clast transport is a field of rising interest since such deposits...
This paper is the first review of coastal boulder studies; it serves as a peer-reviewed introduction...
Well-imbricated large boulders of quartzite, greater than 100 tonnes weight, occur along the crest o...
Whatever the generating mechanism of a tsunami may be, this event can discharge destructive energy a...
Well-imbricated large boulders of quartzite, greater than 100 tonnes weight, occur along the crest o...
Well-imbricated large boulders of quartzite, greater than 100 tonnes weight, occur along the crest o...
Whatever the generating mechanism of a tsunami may be, this event can discharge destructive energy a...