References

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Title Page
Preface
Background
Conceptual Framework
Theory
Application
Testing
Prescriptive Use
Conclusion
References
Table3
Figure Captions
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REFERENCES

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Beven, K. and M. J. Kirkby, A physically based, variable contributing area model of basin hydrology, Hydrol. Sci. Bull., 24, 43-69, 1979.

Burroughs, E. R., Jr., and B. R. Thomas, Declining root strength in Douglas-Fir after felling as a factor in slope stability, U.S. Dept. of Agriculture, Forest Service Research Paper INT-190, 27p.

Costa-Cabral, M. C., and Burges, S. J., Digital elevation model networks (DEMON): A model of flow over hillslopes for computation of contributing and dispersal areas, Water Resources Research, 30, 1681-1692, 1994.

Dietrich, W. E., and T. Dunne, Sediment budget for a small catchment in mountainous terrain, Zeit. für Geomorph., Suppl. 29, 191-206, 1978.

Dietrich, W. E., Dunne, T., Humphrey, N. F., and Reid, L. M., Construction of sediment budgets for drainage basins, in Sediment Budgets and Routing in Forested Drainage Basins, edited by F. J. Swanson, R. J. Janda, T. Dunne, and D. N. Swanston, General Technical Report PNW-141, Forest Service, U.S. Dept. of Agriculture, p. 5 - 23, 1982.

Dietrich, W. E., Wilson, C. J., Montgomery, D. R., McKean, J., and Bauer, R., Channelization Thresholds and Land Surface Morphology, Geology, v. 20, p. 675-679, 1992.

Dietrich, W. E., Wilson, C. J., Montgomery, D. R., McKean, J., Analysis of Erosion Thresholds, Channel Networks and Landscape Morphology Using a Digital Terrain Model, Journal of Geology, v. 101, p. 259-278, 1993.

Dietrich, W. E., Reiss, R., Hsu, M.-L., and Montgomery, D. R., A process-based model for colluvial soil depth and shallow landsliding using digital elevation data, Hydrological Processes, v. 9, p. 383-400, 1995.

Duan, J., A coupled hydrologic-geomorphic model for evaluating effects of vegetation change on watersheds, unpublished Ph.D. dissertation, Oregon State University, 133p., 1996.

Dunne, T., 1991, Stochastic aspects of the relations between climate, hydrology and landform evolution, Trans., Japanese Geomorphological Union 12, 1-24.

Endo, T., and T. Tsuruta, The effects of tree roots on the shearing strength of soil, Annual Report, Forest Experiment Station, Hokkaido, 167-182, 1969.

Gray, D. H., and Megahan, W. F., Forest vegetation removal and slope stability in the Idaho Batholith, Res. Pap. INT-271, Forest Service, U.S. Dept. of Agriculture, Ogden, UT, 23pp., 1981.

Heimsath, A. M., Dietrich, W. E., Nishiizumi, K., and Finkel, R. C., The soil production function and landscape equilibrium, Nature 388, 358-361, 1997.

Hsu, M., A grid-based model for predicting soil-depth and shallow landslides, unpublished Ph.D. dissertation, University of California, Berkeley, 253p., 1994.

Johnson, K.A. and Sitar, N. Hydrologic conditions leading to debris flow initiation, Can. Geotechn. J., 27(6) p. 789-801, 1990..

Montgomery, D. R., Road Surface Drainage, Channel Initiation, and Slope Stability, Water Resources Research, v. 30, p. 1925-1932, 1994.

Montgomery, D. R., Dietrich, W. E., Torres, R., Anderson, S. P., Heffner, J. T. and Loague, K., Hydrologic Response of a Steep Unchanneled Valley to Natural and Applied Rainfall, Water Resources Research, v. 33, p. 91-109, 1997.

Montgomery, D. R., and Dietrich, W. E., A Physically-Based Model for the Topographic Control on Shallow Landsliding, Water Resources Research, v. 30, p. 1153-1171, 1994.

Montgomery, D. R., and Dietrich, W. E., Landscape Dissection and Drainage Area-Slope Thresholds, in Process Models and Theoretical Geomorphology, edited by M. J. Kirkby, John Wiley & Sons, p. 221-246, 1994b.

Montgomery, D. R., and Dietrich, W. E., Hydrologic Processes in a Low-Gradient Source Area, Water Resources Research, v. 31, p. 1-10, 1995.

Montgomery, D. R., Dietrich, W. E., and Sullivan, K., The Role of GIS in Watershed Analysis, in Landform Monitoring, Modelling and Analysis, edited by S. Lane, K. Richard, and J. Chandler, John Wiley & Sons, pp. 241-261, 1998.

Montgomery, D. R., Sullivan, K., and Greenberg, H., Regional test of a model for shallow landsliding, Hydrological Processes special issue on GIS in Hydrology, in press, 1998.

Moore, I.D., O'Loughlin, E. M., and Burch, G. J., A contour-based topographic model for hydrological and ecological applications, Earth Surf. Process. Landforms, 13, p. 305-320., 1988.

Okimura, T., and R. Ichikawa, A prediction method for surface failures by movements of infiltrated water in a surface soil layer, Natural Disaster Science, 7, 41-51, 1985.

Okimura, T., and M. Nakagawa, A method for predicting surface mountain slope failure with a digital landform model, Shin-Sabo, v. 41, p. 48-56, 1988.

O'Loughlin, E.M., Prediction of surface saturation zones in natural catchments by topographic analysis: Water Resour. Res., 22, 794-804, 1986.

Pack, R. T. and Tarboton, D. G., New developments in terrain stability mapping in B.C., Proc. of the 11th Vancouver Geotechnical Soc. Symp- Forestry Geotechnique and Resource Engineer., 12p., 1997

Pierson, T. C., Factors conrolling debris-flow initiation on forested hillslopes in the Oregon Coast Range, unpublished Ph.D., University of Washington,166p., 1977.

Prosser, I. P., and Abernathy, B., Predicting the topographic limits to a gully network using a digital terrain model and process thresholds, Water Resources Research 32, 2289-2298, 1996.

Reneau, S. L., Dietrich, W. E., Wilson, C. J., and Rogers, J. D., Colluvial deposits and associated landslides in the northern San Francisco Bay area, California, USA: in Proceedings of IVth International Symposium on Landslides, International Society for Soil Mechanics and Foundation Engineering, Toronto, Canada, p. 425-430, 1984.

Reneau, S. L., Dietrich, W. E., Dorn, R. I., Berger, C. R., and Rubin, M., Geomorphic and paleoclimatic implications of latest Pleistocene radiocarbon dates from colluvium-mantled hollows, California: Geology 14, 655-658, 1986.

Reneau, S. L., and W. E. Dietrich, Size and location of colluvial landslides in a steep forested landscape, in Erosion and Sedimentation in the Pacific Rim, edited by R. L. Beschta, T. Blinn, G. E. Grant, F. J. Swanson, and G. G. Ice, Int. Assoc. Hyd. Sci. Pub. 165, 39-49, 1987.

Reneau, S. L., and W. E. Dietrich, Depositional history of hollows on steep hillslopes, coastal Oregon and Washington, National Geogr. Res., 6, 220-230, 1990.

Reneau, S. L., and W. E. Dietrich, Erosion rates in the southern Oregon Coast Range: Evidence for an equilibrium between hillslope erosion and sediment yield, Earth Surf. Proc. Land., 16, 307-322, 1991.

Schroeder, W. L., and Alto, J. V., Soil properties for slope stability analysis; Oregon and Washington coastal mountains, Forest Sci., 29, 823-833, 1983.

Sidle, R. C., A theoretical model of the effects of timber harvesting on slope stability, Water Resour. Res., 28, 1897-1910, 1992.

Tang, S. M., and Montgomery, D. R., Riparian buffers and potentially unstable ground, Environmental Management, 19, 741-749, 1995.

Tarboton, D. G., A new method for the determination of flow directions and upslope areas in grid digital elevation models, Water Resources Research, 33, 309-319, 1997.

Wilson, C. J., and W. E. Dietrich, The contribution of bedrock groundwater flow to storm runoff and high pore pressure development in hollows, in Erosion and Sedimentation in the Pacific Rim, edited by R. L. Beschta, T. Blinn, G. E. Grant, G. G. Ice, and F. J. Swanson, Int. Assoc. Hyd. Sci. Pub. 165, 49-60, 1987.

Wu, W., and R. C., Sidle, A distributed slope stability model for steep forested basins, Water Resour. Res., 31, 2097-2110, 1995.

Zhang, W., and Montgomery, D. R., Digital Elevation Model Grid Size, Landscape Representation, and Hydrologic Simulations, Water Resources Research, 30, 1019-1028, 1994.

 

Copyright 1998, William Dietrich and David Montgomery
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Last updated: November 29, 1998.