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Fine sediment transport. Fines Till derived soils (e.g., Clarion) ~ 45-70% fines Alluvial soils (e.g., Coland) 65-80% fines Loess-derived soils ~ > 80%

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Presentation on theme: "Fine sediment transport. Fines Till derived soils (e.g., Clarion) ~ 45-70% fines Alluvial soils (e.g., Coland) 65-80% fines Loess-derived soils ~ > 80%"— Presentation transcript:

1 Fine sediment transport

2 Fines Till derived soils (e.g., Clarion) ~ 45-70% fines Alluvial soils (e.g., Coland) 65-80% fines Loess-derived soils ~ > 80% fines

3 Sources of fines Upland sheet and rill erosion Gullies, tributaries Banks (alluvial storage)

4 Suspended sediment Measured from water- column samples Commonly quantified in g/L (mass sediment per volume water)

5 Forces & phenomena in transport of fines Gravitational settling: fines satisfy classical Stokes law (Fickian) diffusion: transport down gradients in concentration Advection: transport with flow Turbulent mixing: vertical and transverse transport in eddies Dispersion (~advection + mixing)

6 Suspended sediment

7 Rouse diagram

8 Sediment load regimes What proportion of a stream’s sediment load is transported as suspended (+wash) load versus bedload?

9 Suspended sediment

10

11 What is the relationship between supply and capacity for suspended load?

12 Mechanism of supply limitation Leads to clockwise hysteresis


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