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Monitoring morphological and vegetation changes and flow events in dryland river channels

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Abstract

Monitoring of impacts of floods in river valleys of dryland regions has become important with the onset and threats of desertification and is likely to become even more vital with predictions of increased effects of climate and land use change. It is also needed in order to conform to requirements of the EU Water Framework Directive. Monitoring in such regions sets particular challenges. This paper explains a system of low-cost monitoring of changes in morphology, vegetation and sediment cover in channels and valley floors of ephemerally flowing streams. It has been applied in SE Spain for 10 years and has proved very effective. In particular, the use of simple crest-stage recorders for measuring flow height and the use of real-time differential GPS for rapid and accurate survey and for relocating points have proved very valuable. Part of the monitoring is focused on the interaction of plants and channel processes. Small changes in and around vegetation associated with flow events have been detected by a combination of quadrat surveys and cross-profiling of the channel. A range of flow events has been measured over the period of monitoring, demonstrating their differing effects and the varying sensitivity and responsiveness of different sites. The sporadic occurrence of flood events in such an environment means that a strategy of monitoring several sites and of continuation over many years has great benefits.

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References

  • Arcement, G.J., & Schneider, V.R. (1989). Guide to selecting Manning's roughness coefficients for natural channels and floodplains. United States Geological Survey Water Supply Paper. U.S. Department of the Interior.

  • Brasington, J., Langham, J., & Rumsby, B. (2003). Methodological sensitivity of morphometric estimates of coarse fluvial sediment transport. Geomorphology, 53, 299–316.

    Article  Google Scholar 

  • Brookes, C.J., Hooke, J.M., & Mant, J. (2000). Modelling vegetation interactions with channel flow in river valleys of the Mediterranean region. Catena, 40, 93–118.

    Article  Google Scholar 

  • Bull, L.J., Kirkby, M.J., Shannon, J., & Hooke, J.M. (1999). The impact of rainstorms on floods in ephemeral channels in southeast Spain. Catena, 38, 191–209.

    Article  Google Scholar 

  • Church, M.A., McLean, D.G., & Wolcott, J.F. (1987). River bed gravels: sampling and analysis. In C.R. Thorne, J.C. Bathurst, & R.D. Hey (Eds.), Sediment transport in gravel-bed rivers (pp. 43–79). Chichester: John Wiley & Sons.

    Google Scholar 

  • Conesa-Garcia, C. (1995). Torrential flow frequency and morphological adjustments of ephemeral channels in south-east Spain. In E.J. Hickin (Ed), River Geomorphology (pp. 171–192). Chichester: John Wiley and Sons.

    Google Scholar 

  • Graf, W.L. (1988). Fluvial processes in dryland rivers. Berlin: Springer-Verlag.

    Google Scholar 

  • Hooke, J.M., & Mant, J.M. (2000). Geomorphological impacts of a flood event on ephemeral channels in SE Spain. Geomorphology, 34, 163–180.

    Article  Google Scholar 

  • Hooke, J., & Mant, J. (2002). Morpho-dynamics of ephemeral streams. In L.J., Bull & M.J. Kirkby (Eds.), Dryland Rivers: Hydrology and Geomorphology of Semi-arid Channels (pp. 173–04). John Wiley & Sons, Ltd.

  • Hooke, J.M., Brookes, C.J., Duane, W., & Mant, J.M. (2005). A simulation model of morphological, vegetation and sediment changes in ephemeral streams. Earth Surface Process and Landform, 30, 845–66.

    Article  Google Scholar 

  • Lane, S.N., Chandler, J.H., & Richards, K.S. (1994). Develop- ments in monitoring and modelling small-scale river bed topography. Earth Surface Process and Landform, 19, 349–68.

    Article  Google Scholar 

  • Lopez-Bermudez, F., Conesa-Garcia, C., & Alsonso-Sarria, F. (2002). Floods: magnitude and frequency in ephemeral streams of the Spanish Mediterranean region. In L., Bull & M., Kirkby (Eds.), Dryland rivers: hydrology and geomorphology of semi-arid channels (pp. 229–50). Chichester: John Wiley & Sons.

    Google Scholar 

  • Mant, J. (2002). Vegetation in the ephemeral channels of southeast Spain: its impact on and response to morphological change. Unpublished Ph.D. thesis, University of Portsmouth, Portsmouth, United Kingdom.

  • Martin, Y., & Church, M. (1995). Bed-material transport estimated from channel surveys, Vedder River, British Columbia. Earth Surface Process and Landform, 20, 347–361.

    Article  Google Scholar 

  • McEwan, I.K., Sheen, T.M., Cunningham, G.J., & Allen, A.R. (2000). Estimating the size composition of sediment surfaces through image analysis. in: Proceedings of the Institution of Civil Engineers. Water, Maritime and Energy, Institution of Civil Engineers by Thomas Telford Services. London, United Kingdom, 189–195.

    Google Scholar 

  • Poesen, J.W.A., & Hooke, J.M. (1997). Erosion, flooding and channel management in Mediterranean environments of southern Europe. Prog. Phys. Geog., 21, 157–99.

    Google Scholar 

  • Ries, J.B., & Marzloff, I. (1997). Identification of sediment sources by large = scale aerial photography taken from a monitoring blimp. Physics and Chemistry of the Earth, 22, 295–02.

    Article  Google Scholar 

  • Ries, J.B., & Marzloff, I. (2003). Monitoring of gully erosion in the Central Ebro Basin by large-scale aerial photography taken from a remotely controlled blimp. Catena., 50, 309–28.

    Article  Google Scholar 

  • Sime, L.C., & Ferguson, R.I. (2003). Information on grain sizes in gravel-bed rivers by automated image analysis. Journal of Sedimentary Research, 73 630–36.

    Google Scholar 

Download references

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Correspondence to J. M. Hooke.

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Hooke, J.M. Monitoring morphological and vegetation changes and flow events in dryland river channels. Environ Monit Assess 127, 445–457 (2007). https://doi.org/10.1007/s10661-006-9294-6

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  • DOI: https://doi.org/10.1007/s10661-006-9294-6

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