Laserfiche WebLink
<br />Arizona: Tucson, University of Arizona, doctoral <br />dissertation, 335 p. <br />House, P.K., and Pearthree, P.A., 1995, A geo- <br />morphologic and hydrologic evaluation of an <br />extraordinary flood discharge estimate: American <br />Geophysical Union, Water Resources Research, <br />v. 31, no. 12, p. 3059-3073. <br />Jarrett, R.D., 1985, Detennination of roughness <br />coefficients for streams in Colorado: U.S. <br />Geological Survey Water-Resources Investigations <br />Report 85-4004, 53 p. <br />Kouwen, N., 1992, Modem approach to design of <br />grassed channels: American Society of Civil <br />Engineers, Journal of Irrigation and Drainage <br />Engineering, v. 118, no. 5, p. 733-743. <br />Kouwen, N., and Li, R., 1980, Biomechanics of <br />vegetative channel linings: American Society of <br />Civil Engineers, Journal ofthe Hydraulics Division, <br />v. 106, no. HY6, p. 1085-1103. <br />Kouwen, N., and Unny, T.E., 1973, Flexible roughness <br />in open channels: American Society of Civil <br />Engineers, Journal of the Hydraulics Division, v. 99, <br />no. HY5, p. 713-728. <br />Li, R., and Shen, H.W., 1973, Effect of tall vegetations <br />on flow and sediment: American Society of Civil <br />Engineers, Journal of the Hydraulics Division, v. 99, <br />no. HY5, p. 794-813. <br />Limerinos, J.T., 1970, Detennination of the Manning's <br />coefficient from measured bed roughness in natural <br />channels: U.S. Geological Survey Water-Supply <br />Paper 1 898-B, 47 p. <br />Mastennan, R., and Thome, c.R., 1992, Predicting <br />influence of bank vegetation on channel capacity: <br />American Society of Civil Engineers, Journal of <br />Hydraulic Engineering, v. 118, no. 7, p. 1052-1057. <br />NBS Lowry Engineers and Planners and McLaughlin <br />Water Engineers, Ltd., 1992, Drainage design <br />manual for Maricopa County, Arizona, Volume 11, <br />Hydraulics: Phoenix, Arizona, Flood Control <br />District of Maricopa County report, V.p. <br />Ohlemutz, R.E., 1992, Ventura River flood of February <br />1992-A lesson ignored?: American Water <br />Resources Association, Water Resources Bulletin~ <br />v.28,no. 5,p. 813-832. <br />Petryk, Sylvester, and Bosmajiam, G., 111., 1975, <br />Analysis of flow through vegetation: American <br />Society of Civil Engineers, Journal of the <br />Hydraulics Division, v. 101, no. HY7, p. 871-884. <br />Phelps, H.O., 1970, The friction coefficient for shallow <br />flows over a simulated turf surface: American <br />Geophysical Union, Water Resources Research, <br />v. 6, no. 4,p. 1220-1226. <br /> <br />Phillips, lV., and Hjalmarson, H.W., 1994, Floodflow <br />effects on riparian vegetation in Arizona, in <br />Cotroneo, G.V., and Rumer, R.R., eds., Hydraulic <br />Engineering'94, v. I, Proceedings of the 1994 <br />Conference: American Society of Civil Engineers, <br />p.707-710. <br />Phillips, lV., and Ingersoll, T.L., 1998, Verification of <br />roughness coefficients for selected natural and <br />constructed stream channels in Arizona: U.S. <br />Geological Survey Professional Paper 1584, 77 p. <br />Rantz, S.E., and others, 1982, Measurement and <br />computation of streamflow-Volume 1. Measure- <br />ment of stage and discharge: U.S. Geological <br />Survey Water-Supply Paper 2175, 284 p. <br />Ree, W.O., and Palmer, V.J., 1949, Flow of water in <br />channels protected by vegetative linings: U.S. Soil <br />Conservation Service Bulletin 967, 115 p. <br />Roeske, R.H., Garrett, lM., and Eychaner, J.H., 1989, <br />Floods of October 1983 in southeastern Arizona: <br />U.S. Geological Survey Water-Resources Investiga- <br />tions Report 85-4225--C, 77 p. <br />Sabol, G.V., Rumann, J.M., Khalili, D., and Waters, <br />S.D., 1990, Hydrologic design manual for Maricopa <br />Counly, Arizona: Phoenix, Arizona, Flood Control <br />District of Maricopa County report, V.p. <br />Sheannan, J.O., 1990, User's manual for <br />WSPRO-A computer model for water-surface <br />profile computations: Washington, D.C., Federal <br />Highway Administration Publication No. <br />FHWA-IP-89-027, v.p. <br />Shields, A., 1936, Application of similarity principles <br />and turbulence research to bed-load movement, in <br />Ott, W.P., and Van Uchelen, lC., translators, <br />Anwendung der Aehnl ichkeitsmechanik und der <br />Terbulensforschung auf die Geschiebebewegung: <br />Pasadena, California, California Institute of <br />Technology Report No. 167,44 p. <br />Simons, D.B., and Richardson, E.V., 1966, Resistance to <br />flow in alluvial channels: U.S. Geological Survey <br />Professional Paper 422-J, 61 p. <br />Soil Conservation Service, 1954, Handbook of channel <br />design for soil and water conservation: Soil <br />Conservation Service Report SCS- TP-{i I, revised, <br />34p. <br />Stromberg, J.c., Richter, B.D., Patten, D.T., and <br />Wolden, L.G., 1993, Response of a Sonoran forest <br />to a 10-year return flood: Great Basin Naturalist, <br />v. 53, no. 2, p. 118-128. <br />Temple, D.M., 1980, Tractive force design of vegetated <br />channels: American Society of Agricultural <br />Engineers Transactions, v. 23, no. 4, p. 884-890. <br />Thomsen, B. W., and Hjalmarson, H.W., 1991, Estimated <br />Manning's roughness coefficients for stream <br />channels and flood plains in Maricopa County, <br /> <br />l <br /> <br />1 <br /> <br />28 Method to Estimate Effects 01 Flow-Induced Vegetation Changes on Channel Conveyances 01 Streams in Central Arizona <br />