Area of research
Earth-Surface Processes · Atmospheric Science
Research interest
Research interests include Geology, Turbidity current, Sediment, Turbidite, Oceanography, and Seafloor spreading.
Turbidity current flow structure and its modulation by contour currents: Insights from 3D flume experiments
Transport and accumulation of litter in submarine canyons: a geoscience perspective
Shape‐dependent settling velocity of skeletal carbonate grains: Implications for calciturbidites
Deep‐water sand transfer by hyperpycnal flows, the Eocene of Spitsbergen, Arctic Norway
Secondary flow in contour currents controls the formation of moat-drift contourite systems
Controls on upstream-migrating bed forms in sandy submarine channels
First source-to-sink monitoring shows dense head controls sediment flux and runout in turbidity currents
Fill, flush or shuffle: How is sediment carried through submarine channels to build lobes?
Blood, lead and spheres: A hindered settling equation for sedimentologists based on metadata analysis
The Influence of Confining Topography Orientation on Experimental Turbidity Currents and Geological Implications
Flow‐process controls on grain type distribution in an experimental turbidity current deposit: Implications for detrital signal preservation and microplastic distribution in submarine fans
Proximal to distal grain‐size distribution of basin‐floor lobes: A study from the Battfjellet Formation, Central Tertiary Basin, Svalbard
Transport and Burial of Microplastics in Deep-Marine Sediments by Turbidity Currents
Channel-levee evolution in combined contour current–turbidity current flows from flume-tank experiments
The influence of a slope break on turbidite deposits: An experimental investigation
Entangled external and internal controls on submarine fan evolution: an experimental perspective
The influence of basin setting and turbidity current properties on the dimensions of submarine lobe elements
New flow relaxation mechanism explains scour fields at the end of submarine channels
Froude supercritical flow processes and sedimentary structures: New insights from experiments with a wide range of grain sizes
Turbulent diffusion modelling of sediment in turbidity currents: An experimental validation of the Rouse approach
Sediment Volume and Grain-Size Partitioning Between Submarine Channel−Levee Systems and Lobes: An Experimental Study
Wave Ripple Development on Mixed Clay‐Sand Substrates: Effects of Clay Winnowing and Armoring
Morphodynamics and depositional signature of low‐aggradation cyclic steps: New insights from a depth‐resolved numerical model
Linking submarine channel–levee facies and architecture to flow structure of turbidity currents: insights from flume tank experiments
The stratigraphic record and processes of turbidity current transformation across deep‐marine lobes
Morphodynamics of submarine channel inception revealed by new experimental approach
Fluvio-Marine Sediment Partitioning As A Function of Basin Water Depth
Deep-Water Sediment Bypass
Interpreting syndepositional sediment remobilization and deformation beneath submarine gravity flows; a kinematic boundary layer approach
Concentration-Dependent Flow Stratification In Experimental High-Density Turbidity Currents and Their Relevance To Turbidite Facies Models