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Biogeochemistry, ISSN 0168-2563, 2012, Volume 113, Issue 1-3, pp. 37 - 52
... and bioirrigation are still relatively poorly understood. Experimental ship-based data are presented showing the effects of diffusion and resuspension on cohesive sediments at a temperate shelf location in the North Sea... 
Phosphates | Oxygen | Biogeochemistry | Seas | Flumes | Shear stress | Nitrates | Porosity | Sediments | Sea water | Earth Sciences | Biogeosciences | Life Sciences, general | Resuspension | Ecosystems | Oyster Grounds | Nutrients | Cohesive sediment | Flume | North Sea | Environmental Chemistry | COASTAL SEDIMENTS | DENITRIFICATION | ORGANIC-MATTER | SHALLOW | ENVIRONMENTAL SCIENCES | GEOSCIENCES, MULTIDISCIPLINARY | DYNAMICS | PHOSPHORUS RELEASE | FRISIAN FRONT | MARINE | FLUXES | IN-SITU | Water | Air pollution | Analysis | Sediments (Geology)
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Ocean Engineering, ISSN 0029-8018, 01/2017, Volume 130, pp. 523 - 530
In this study, the erodibility of fluidized cohesive sediments from the seabed of Hangzhou Bay, China, was experimentally investigated in unidirectional open flows... 
Cohesive sediment | Threshold motion | Critical condition | Erodibility | Scour rate | Sediment fluidization | BED | RHEOLOGICAL PROPERTIES | DEPOSITION | RESUSPENSION | EROSION | TRANSPORT | ENGINEERING, CIVIL | ENGINEERING, MARINE | ENGINEERING, OCEAN | OCEANOGRAPHY | STRESS | FINE-GRAINED SEDIMENT | Ocean bottom | Sediments (Geology)
Journal Article
Ocean Engineering, ISSN 0029-8018, 01/2019, Volume 172, pp. 183 - 190
Erosion of cohesive soils is represented typically as an erosion threshold or erosion rate. Predicting the erosion threshold of the cohesive soils requires... 
Erosion threshold | Fractal | Aggregate | Erosion | Cohesive soil | FLOCCULATION | PARTICLES | BEHAVIOR | FLOCS | SIZE | STRENGTH | DENSITY | CONSOLIDATION | ENGINEERING, CIVIL | ENGINEERING, MARINE | ENGINEERING, OCEAN | OCEANOGRAPHY | ERODIBILITY | SETTLING VELOCITY
Journal Article
Journal Article
Natural Hazards and Earth System Sciences, ISSN 1561-8633, 07/2016, Volume 16, Issue 7, pp. 1541 - 1551
Journal Article
Journal of Hydraulic Engineering, ISSN 0733-9429, 01/2016, Volume 142, Issue 1, p. 04015034
AbstractThe purpose of this study was to quantify how vegetation influences the flow and sediment processes relevant to the design and management of environmental compound channels... 
Technical Papers | Drainage | Suspended sediment | Flow resistance | Cohesive soils | Hydraulic models | Vegetation | MANAGEMENT | FIELD | DEPOSITION | WATER RESOURCES | RIVER | SUCCESSION | ENGINEERING, MECHANICAL | FLOODPLAIN | ENGINEERING, CIVIL | WOODY VEGETATION | RESISTANCE | 2-STAGE CHANNEL | WATER-QUALITY
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