Hydraulic modeling of runoff over a rough surface under partial inundation

Full text not archived in this repository.

Please see our End User Agreement.

It is advisable to refer to the publisher's version if you intend to cite from this work. See Guidance on citing.

Add to AnyAdd to TwitterAdd to FacebookAdd to LinkedinAdd to PinterestAdd to Email

Roche, N., Daian, J. F. and Lawrence, D. S. L. (2007) Hydraulic modeling of runoff over a rough surface under partial inundation. Water Resources Research, 43 (8). W08410. ISSN 0043-1397 doi: 10.1029/2006wr005484

Abstract/Summary

This study presents a numerical method to derive the Darcy- Weisbach friction coefficient for overland flow under partial inundation of surface roughness. To better account for the variable influence of roughness with varying levels of emergence, we model the flow over a network which evolves as the free surface rises. This network is constructed using a height numerical map, based on surface roughness data, and a discrete geometry skeletonization algorithm. By applying a hydraulic model to the flows through this network, local heads, velocities, and Froude and Reynolds numbers over the surface can be estimated. These quantities enable us to analyze the flow and ultimately to derive a bulk friction factor for flow over the entire surface which takes into account local variations in flow quantities. Results demonstrate that although the flow is laminar, head losses are chiefly inertial because of local flow disturbances. The results also emphasize that for conditions of partial inundation, flow resistance varies nonmonotonically but does generally increase with progressive roughness inundation.

Altmetric Badge

Additional Information
Item Type Article
URI https://reading-clone.eprints-hosting.org/id/eprint/4067
Identification Number/DOI 10.1029/2006wr005484
Divisions Science > School of Archaeology, Geography and Environmental Science
Uncontrolled Keywords OVERLAND-FLOW RESISTANCE CHANNELS
Additional Information
Download/View statistics View download statistics for this item

University Staff: Request a correction | Centaur Editors: Update this record

Search Google Scholar