Sediment Transport

Sediment transport is the movement of soil, sand, silt, gravel, and other particles by flowing water, wind, ice, or gravity, making it central to understanding landscape change and infrastructure performance. In engineering systems, fluid forces generate boundary shear stress that can entrain particles when it exceeds their resistance, carrying them as bed load along the channel or in suspension before deposition occurs as flow conditions change. Engineers analyze sediment transport to predict riverbed erosion, channel migration, coastal change, reservoir sedimentation, and the stability of bridges, dams, pipelines, and navigation channels. These assessments support erosion control, habitat management, and resilient hydraulic design.

Sediment Transport - Related Videos

Research

JoVE Journal - Biology

Actin Co-Sedimentation Assay; for the Analysis of Protein Binding to F-Actin

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Cited by 18 •

2008

Proteins bind to filamentous actin (F-actin) through distinct actin binding modules. In this video we demonstrate the procedure of actin co-sedimentation, which is an in vitro assay routinely used to analyze proteins or specific domains that bind F-actin.

Education

JoVE Science Education - Environmental Sciences

Soxhlet Extraction of Lipid Biomarkers from Sediment

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2023

Source: Laboratory of Jeff Salacup - University of Massachusetts Amherst Every lab needs standards that track the performance, accuracy, and precision of its instruments over time to ensure a measurement made today is the same as a measurement made a year from now (Figure 1). Because standards must test the performance of instruments over a long period of time, large volumes of the standards are often required. Many chemical standards can be purchased from retail scientific companies, like...

Sonication Extraction of Lipid Biomarkers from Sediment

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2023

Source: Laboratory of Jeff Salacup - University of Massachusetts Amherst The material comprising the living "organic" share of any ecosystem (leaves, fungi, bark, tissue; Figure 1) differs fundamentally from the material of the non-living "inorganic" share (rocks and their constituent minerals, oxygen, water, metals). Organic material contains carbon linked to a series of other carbon and hydrogen molecules (Figure 2), which distinguishes it from inorganic material. Carbon's wide valency range...

Research

JoVE Journal - Biochemistry
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Measuring Protein Binding to F-actin by Co-sedimentation

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Cited by 18 •

2017

This protocol describes a method to test the ability of a protein to co-sediment with filamentous actin (F-actin) and, if binding is observed, to measure the affinity of the interaction.

Continuous Instream Monitoring of Nutrients and Sediment in Agricultural Watersheds

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Cited by 3 •

2017

With the advancement of technology and the rise in end-user expectations, the need and use of higher temporal resolution data for pollutant load estimation has increased. This protocol describes a method for continuous in situ water quality monitoring to obtain higher temporal resolution data for informed water resource management decisions.

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