Joep E.A. Storms
Delft University of Technology
66 Papers
382 Citations
Joep E.A. Storms is an academic researcher from Delft University of Technology. The author has contributed to research in topics: Sediment & Fluvial. The author has an hindex of 22, co-authored 59 publications. Previous affiliations of Joep E.A. Storms include Utrecht University.
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Papers
Mississippi Delta subsidence primarily caused by compaction of Holocene strata
Torbjörn E. Törnqvist,Davin J. Wallace,Davin J. Wallace,Joep E.A. Storms,Joep E.A. Storms,Jakob Wallinga,Jakob Wallinga,Remke L. Van Dam,Remke L. Van Dam,Martijn Blaauw,Martijn Blaauw,Mayke S. Derksen,Cornelis J. W. Klerks,Camiel Meijneken,Camiel Meijneken,Els M. A. Snijders +15 more
TL;DR: In this article, a series of radiocarbon-dated sediment cores from the Mississippi Delta were used to analyse late Holocene deposits and assess compaction rates, and they found that millennial-scale compaction rate primarily associated with peat can reach 5mm per year, values that exceed recent model predictions.
Geomorphological and sequence stratigraphic variability in wave-dominated, shoreface-shelf parasequences
Gary J. Hampson,Joep E.A. Storms +1 more
TL;DR: In this paper, the authors reconstruct ancient shoreface-shelf morphology from clinoform surfaces, and track the evolving morphology of the ancient seafloor by using high-quality outcrop data sets.
212
Controls on river delta formation; insights from numerical modelling
N. Geleynse,Joep E.A. Storms,Dirk-Jan Walstra,H.R. Albert Jagers,Zheng Bing Wang,Marcel J. F. Stive +5 more
TL;DR: In this paper, a coupled hydrodynamic-morphodynamic-stratigraphic detailed numerical modeling was used to assess the influence of wind-generated waves and tides on clastic river delta formation.
183
Coastal dynamics under conditions of rapid sea-level rise: Late Pleistocene to Early Holocene evolution of barrier–lagoon systems on the northern Adriatic shelf (Italy)
TL;DR: In this paper, a multidisciplinary case study of two preserved barrier systems combined the analysis of radiocarbon datings, grain-size distributions, high-resolution seismics, and shelf bathymetry with reconstructions of palaeo-environmental conditions (tides, waves, sea-level change) and forward modelling of barrier-lagoon systems, to provide an integrated view of the coastal transgressive evolution of a large sector of the northern Adriatic shelf between 15 and 8 ka BP.
160
Process-Response Modeling of Wave-Dominated Coastal Systems: Simulating Evolution and Stratigraphy on Geological Timescales
TL;DR: In this paper, a process-response approach is proposed to model the evolution and stratigraphy of wave-dominated coastal systems in two dimensions, based on simple approximations of cross-shore erosion and sedimentation.
133