Awards & distinctions
- 2017 Lauréat du Basin Research Early Career Award pour son article “Cenozoic sediment budget of West Africa and the Niger delta”
Team
GEOL - Géologie
Biography
Jean-Louis Grimaud is a researcher specializing in geomorphology and the dynamics of sedimentary systems. His work focuses primarily on the evolution of river systems, landscape incision, and the modeling of erosion and sedimentation processes at various spatial and temporal scales. His research integrates approaches that combine digital elevation model (DEM) analysis, field mapping, and geostatistical modeling to study the interactions between tectonics, climate, and the dynamics of continental surfaces. Grimaud has notably contributed to our understanding of river capture mechanisms, long-term incision rates, and the redistribution of regolith in various geological contexts, such as the ultrabasic massifs of New Caledonia and European sedimentary basins. His recent work also explores the processes of sedimentary record preservation, the architecture of alluvial deposits, and the dynamics of submarine turbidite systems, with applications in georesources and paleoenvironment.
Publication(s)
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2025
Slowly adjusting and incising river network in a Ni-bearing landscape, SE New Caledonia DOI : 10.1016/j.geomorph.2025.109896
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2025
Kriging Alluvial Thicknesses in Valley Bottoms Using Nonstationary Geometric Anisotropies DOI : 10.1007/s11004-025-10200-w
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2024
Submarine channel stacking patterns controlled by the autogenic 3D kinematics of meander bends DOI : 10.1144/SP540-2022-143
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2024
Incision and rock uplift along the Lower Seine River since Marine Isotope Stage 8 DOI : 10.1002/jqs.3640
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2024
Peridotite Weathering and Ni Redistribution in New Caledonian Laterite Profiles: Influence of Climate, Hydrology, and Structure DOI : 10.3390/min14111082
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2023
Lateral river erosion impacts the preservation of Neolithic enclosures in alluvial plains DOI : 10.1038/s41598-023-43849-6
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2023
Pseudo-Karst Silicification Related to Late Ni Reworking in New Caledonia DOI : 10.3390/min13040518
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2023
Sediment delivery to sustain the Ganges-Brahmaputra delta under climate change and anthropogenic impacts DOI : 10.1038/s41467-023-38057-9
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2022
Preservation and Completeness of Fluvial Meandering Deposits Influenced by Channel Motions and Overbank Sedimentation DOI : 10.1029/2021JF006435
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2022
Bedload infilling and depositional patterns in chute cutoffs channels of a gravel-bed river: The Ain River, France DOI : 10.1002/esp.5260
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2020
Flexural deformation controls on Late Quaternary sediment dispersal in the Garo-Rajmahal Gap, NW Bengal Basin DOI : 10.1111/bre.12425
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2020
Experimental evidence for bifurcation angles control on abandoned channel fill geometry DOI : 10.5194/esurf-8-275-2020
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2020
Geomorphic variability of submarine channelized systems along continental margins: Comparison with fluvial meandering channels DOI : 10.1016/j.marpetgeo.2020.104295
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2019
Forward model applied to channelized turbidite systems: A case study of the Benin major valley fill DOI : 10.3997/2214-4609.201902223
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2018
Geometry and dynamics of braided channels and bars under experimental density currents DOI : 10.1111/sed.12453
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2018
Cenozoic sediment budget of West Africa and the Niger delta DOI : 10.1111/bre.12248
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2018
West African lateritic pediments: Landform-regolith evolution processes and mineral exploration pitfalls DOI : 10.1016/j.earscirev.2018.02.009
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2017
Stream power controls the braiding intensity of submarine channels similarly to rivers DOI : 10.1002/2017GL072964
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2017
Competition between uplift and transverse sedimentation in an experimental delta DOI : 10.1002/2017JF004239
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2016
Experimental migration of knickpoints: Influence of style of base-level fall and bed lithology DOI : 10.5194/esurf-4-11-2016
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2016
Stabilization of large drainage basins over geological time scales: Cenozoic West Africa, hot spot swell growth, and the Niger River DOI : 10.1002/2015GC006169
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2015
Neogene cratonic erosion fluxes and landform evolution processes from regional regolith mapping (Burkina Faso, West Africa) DOI : 10.1016/j.geomorph.2015.04.006
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2014
Very long-term incision dynamics of big rivers DOI : 10.1016/j.epsl.2014.08.021
Teaching
Geoscience and the Anthropocene (GA)
The “Geosciences and the Anthropocene” GA course takes place at several sites impacted by human activity, specifically chosen to deepen students’ understanding of the challenges related to climate change and the energy transition. This course is organized as a one-week intensive off-campus session. For logistical reasons related to the large number of students, the class is divided into six groups working independently under the guidance of a multidisciplinary teaching team. The six groups will be based in the following areas: Paris and Morvan (Île-de-France) Digne-les-Bains and surrounding area (Alpes-de-Haute-Provence) Laragne and surrounding area (Hautes-Alpes) Romanche and Drac Valleys (Isère and Hautes-Alpes) Western Pyrenees (French and Spanish) Roya Valley (Alpes-Maritimes) For each group, the teaching team consists of 2 to 3 faculty members, each of whom will supervise a group of 8 students. Within these small groups, instruction will alternate between observation sessions of natural objects, independent work sessions in which students are invited to observe and analyze the geological terrain relevant to the instruction they have received, tutorials, and visits to key sites or engineering structures. Over the course of the week, each team will present the results of their workshops to all the students in their group.
VS Geology Internship
Natural Environments (Research Quarter)
PhD supervision
- 2025 The evolution of temperatures and the flow of the Seine upstream of Paris during the Holocene DELMETZ Matthias
- 2022 Quantification of erosion of the covers of the Centre de Stockage de la Manche based on their geotechnical characteristics and rainfall. PORTZER Gabriel
- 2020 The Upper Quaternary incision dynamics and valley floor geometry in the Seine River watershed CHOURIO-CAMACHO Diana
- 2017 Abandoned channel infilling by bedload SZEWCZYK Léo
