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              in printed form (go to All Publications to request hard copies) and others are not currently available.  Those publications which we can mail are marked. Publications 
              of interest but which we currently cannot supply in any format are marked 
              with "not currently available."  We plan to make more publications available on-line (as text or 
              as PDF files), so check back for new publications and newly-accessible 
              ones. 
 Road Erosion Publications:
 Elliot, W.J. 2000. Chapter 9. Impact of roads and other 
                    corridors. IN G. Dissmeyer (ed.). Drinking Water from Forests 
                    and Grasslands - A Synthesis of the Scientific Literature. 
                    USDA Forest Service Southern Research Station General Technical 
                    Report SRS-39: 85-100, [ HTML 
                    - https://www.srs.fs.fed.us/pubs/gtr/gtr_srs039/ ] Elliot, W.J.; Hall, D.E.; Graves, S.R. 1999. Predicting sedimentation 
              from forest roads Journal of Forestry, August 1999, 97(8):23-29. 
              [  
              PDF - Predicting sedimentation from forest roads, August 1999 (9831k) 
              ] Elliot, W.J.; Tysdal, L.M. 1999. Understanding and reducing 
              erosion from insloping roads Journal of Forestry, August 1999, 
              97(8):30-34. [ PDF 
              - Understanding and reducing erosion from insloping roads, August 
              1999 (6016k) ] Tysdal, L.M.; Elliot, W.J.; Luce, C.H.; Black, T.A. 1999. Modeling 
              erosion from insloping low-volume roads with WEPP watershed model. 
              Presented at the Seventh International Conference on Low-Volume 
              Roads, May 23-26, 1999, Baton Rouge, LA. Transportation Research 
              Record No. 1652, volume 2. 250-256. [ PDF 
              - Transportation Research Record No. 1652, volume 2. 250-256 (1042k) 
              ] McClelland, D.E.; Foltz, R.B.; Falter, C.M.; Wilson, W.D.; Cundy, 
              T.; Schuster, R.L.; Saurbier, J.; Rabe, C.; Heinemann, R. 1999. 
              Relative effects on a low-volume road system of landslides resulting 
              from episodic storms in northern Idaho. Presented at the Seventh 
              International Conference on Low-Volume Roads, May 23-26, 1999, Baton 
              Rouge, LA. Transportation Research Record No. 1652, volume 2. 
              235-243. [ PDF 
              - Transportation Research Record No. 1652, volume 2. 235-243 (1161k) 
              ] Elliot, W.J.; Foltz, R.B.; Luce, C.H. 1999. Modeling low-volume 
              road erosion. Presented at the Seventh International Conference 
              on Low-Volume Roads, May 23-26, 1999, Baton Rouge, LA. Transportation 
              Research Record No. 1652, volume 2. 244-249. [ PDF 
              - Transportation Research Record No. 1652, volume 2. 244-249 (942k) 
              ] Elliot, W.J., and J. Moll. 1998. Surface flow in Water/Road 
                    Interaction: The X-DRAIN Model. Tech Tips 7700/2500 
                    9877 1301-SDTC. San Dimas, CA: San Dimas Technology and 
                    Development Center. 1 p. [ HTML 
                    - Surface flow in Water/Road Interaction: The X-DRAIN Model, 
                    1998 ] Elliot, W.J.; Foltz, R.B.; Luce, C.H.; Koler, T.E. 1996.
    Computer-aided risk analysis in road decommissioning.
    In: Proceeedings of the AWRA Annual Symposium on Watershed Restoration Management.
    Syracuse, NY; July 1996.  341--350. [ not currently available ] Foltz, Randy B. 1994. Reducing Tire Pressure Reduces 
                    Sediment. Roads/Timber Tech Tips. San Dimas, CA: 
                    San Dimas Technology and Development Center. 1 p. [ HTML 
                    - Reducing Tire Pressure Reduces Sediment, 1994 ] Moore, Tom; Foltz, Randy B.; Cronenwett, Larry. 1995. Central 
              Tire Inflation (CTI) Reduces Sediment up to 84%--A Method to Help 
              Meet New Water Quality Standards and Guidelines. Engineering 
              Tech Tips. San Dimas, CA: San Dimas Technology and Development 
              Center. 1 p. [ TEXT - Central Tire 
              Inflation Reduces Sediment up to 84% ] [ PDF 
              - Central Tire Inflation Reduces Sediment up to 84% (60k) ] Elliot, W.J.; Foltz, R.B.; Luce, C.H.  1995.
   Validation of the Water Erosion Prediction Project (WEPP) model for
   low-volume forest roads.
   In: Proceedings of the Sixth International Conference on Low-Volume
   Roads.
   Minneapolis, MN.  178--186. [ go to All Publications to request printed version ] Elliot, W.J.; Foltz, R.B.; Remboldt, M.D. 1994. Predicting sedimentation 
              from roads at stream crossings with the WEPP model. Paper 947511. 
              Presented at the ASAE International Winter Meeting, December 
              13-16 1994, Atlanta, GA. St. Joseph, MI: American Society of Agricultural 
              Engineers. 10 p. [ HTML - Summary 
              of Predicting sedimentation from roads at stream crossings with 
              the WEPP model ] [ go to All Publications to request printed version ] Morfin, S.; Elliot, B.; Foltz, R.; Miller, S. 1996. Predicting 
              effects of climate, soil, and topography on road erosion with WEPP. 
              Paper 965016. Presented at the ASAE International Winter Meeting. 
              St. Joseph, MI: American Society of Agricultural Engineers. 11 p. 
              [ corrected PDF - 
              Preducting effects of climate, soil and topography on road erosion 
              with WEPP (63k) ] [ go 
              to All Publications to request printed version ] Burroughs, E.R.,Jr.; King, J.G. 1989.
   Reduction of soil erosion on forest roads.
   General Technical Report INT-GTR-264. Ogden, UT: U.S. Forest Service
   Intermountain Research Station.  21 p.
   Request from pubs/rmrs_ogden@fs.fed.us Elliot, W.J.; Foltz, R.B.; Luce, C.H.; Koler, T.E. 1996.
  Computer-aided risk analysis in road decommissioning.
  In: Proceedings of the AWRA Annual Symposium on Watershed
  Restoration Management., July 1996, Syracuse, NY.
  341-350. [ go to All Publications to request printed version ] Foltz, R.B. 1996.
   Traffic and notraffic on an aggregate surfaced road:
   sediment production differences.  Presented at the
   FAO Seminar on Environmentally Sound Forest Roads,
   June 1996, Sinaia, Romania.  13 p. [ go to All Publications to request printed version ] Foltz, R.B.; Elliot, W.J. 1996.
   Measuring and modeling impacts of tire pressures on road
   erosion.   Presented at the
   FAO Seminar on Environmentally Sound Forest Roads,
   June 1996, Sinaia, Romania.  14 p. [ not currently available ] Foltz, R.B.; Elliot, W.J.  1997.
   The impact of lowered tire pressures on road erosion.
   Presented at the Transportation Research Board 76th
   Annual Meeting, January 12-16 1997, Washington, DC.
   Transportation Research Board. [ not currently available ] Ketcheson, G.L.; Megahan, W.F. 1996.
   Sediment production and downslope sediment transport from
   forest roads in granitic watersheds.
   Research Paper INT-RP-486.  Ogden, UT: U.S. Forest Service
   Intermountain Research Station. 11 p.
   Request from pubs/rmrs_ogden@fs.fed.us Luce, C.H. 1996
   Effectiveness of road ripping in restoring infiltration capacity.
   Restoration Ecology 5(3) [ go to All Publications to request printed version ] Moll, J.E. 1996.
   A guide for road closure and obliteration in the Forest Service.
   San Dimas, CA: San Dimas Technology Center, USDA Forest Service
   Technology and Development Program 7700 Engineering, 9677 1205. 49 p. [ go to All Publications to request printed version ] Tysdal, L.; Elliot, B.; Luce, C.; Black, T. 1997. Modeling insloping 
              road erosion processes with the WEPP watershed model. Paper 
              975014. Presented at the 1997 ASAE Annual International Meeting, 
              August 10-14 1997, Minneapolis, MN. St. Joseph, MI: American Society 
              of Agricultural Engineers. 14 p. [ PDF 
              - Modeling insloping road erosion processes with the WEPP watershed 
              model (73k) ] 
 
 
 
 
 
 
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