§ 155.237 REFERENCES.
Bartlett, S.F. and Youd, T. L., 1995, Empirical Prediction of Liquefaction-Induced Lateral Spread: Journal of Geotechnical Engineering, v. 121, n. 4 - April, American Society of Civil Engineers, pp. 316-329.
Beukelman, G.S and Hylland, M.D., 2016, Guidelines for Evaluating Landslide Hazards in Utah in Guidelines for Investigating Geologic Hazards and Preparing Engineering-Geology Reports, with a Suggested Approach to Geologic-Geology Ordinances in Utah: Utah Geological Survey Circular 122, p. 59-73, online:
Blake, T.F., Hollingsworth, R.A. and Stewart, J.P., editors, 2002, Recommended Procedures for Implementation of DMG Special Publication 117, Guidelines for Analyzing and Mitigating Landslide Hazards in California: Southern California Earthquake Center, p. 110, (http://www-scec.usc.edu/resources/catalog/LandslideProceduresJune02.pdf).
Boulanger, R.W. and Idriss I.M., 2004, Evaluating the Potential for Liquefaction Resistance or Cyclic Failures of Silts and Clays: University of California, Davis Center for Geotechnical Modeling Report UCD/CGM-04/01, (https://faculty.engineering.ucdavis.edu/boulanger/wp-content/uploads/sites/71/2014/09/Boulanger _Idriss_CGM04-01_2004.pdf).
Bowman, S.D. and Lund, W.R., editors, 2016, Guidelines for Investigating Geologic Hazards and Preparing Engineering-Geology Reports, with a Suggested Approach to Geologic-Hazard Ordinances in Utah: Utah Geological Survey Circular 122, p. 203, online: (https://ugspub.nr.utah.gov/publications/circular/c-122.pdf).
Bowman, S.D. and Lund, W.R., 2016, Guidelines for Conducting Engineering-Geology Investigations and Preparing Engineering-Geology Reports in Utah in Guidelines for Investigating Geologic Hazards and Preparing Engineering-Geology Reports, with a Suggested Approach to Geologic-Geology Ordinances in Utah: Utah Geological Survey Circular 122, p. 15-30, online: (https://ugspub.nr.utah.gov/publications/circular/c-122.pdf).
Bray, J.D. and Rathje, E.M., 1998, Earthquake-Induced Displacements of Solid Waste Landfills: Journal of Geotechnical and Geoenvironmental Engineering, v. 124, no. 3, pp. 242-253.
Bray J. D. and Sancio R. B., 2006, Assessment of Liquefaction Susceptibility of Fine-Grained Soils: Asce Journal of Geotechnical and Geoenvironmental Engineering, September 2006.
Bray, J.D. and Travasarou, T, 2007, Simplified Procedure for Estimating Earthquake-Induced Deviatoric Slope Displacements: Journal of Geotechnical and Geoenvironmental Engineering, v. 133, no. 4, April 1, 2007, pp. 381-392.
Bryant, B., 1988, Geology of the Farmington Canyon Complex, Wasatch Mountains, Utah: U.S. Geological Survey Professional Paper 1476, p. 54, scale 1:50,000, (part of the Bountiful Peak quadrangle and west 1/2 of the Porterville quadrangle, Morgan County, Utah), online: (https://pubs.er.usgs.gov/publication/pp1476).
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Giraud, R.E., 2016, Guidelines for the Geologic Investigation of Debris-Flow Hazards on Alluvial Fans in Utah in Guidelines for Investigating Geologic Hazards and Preparing Engineering-Geology Reports, with a Suggested Approach to Geologic-Geology Ordinances in Utah: Utah Geological Survey Circular 122, p. 75-91, online: (https://ugspub.nr.utah.gov/publications/circular/c-122.pdf).
Giraud, R.E. and Shaw, L.M., 2007, Landslide Susceptibility Map of Utah: Utah Geological Survey Map M-228, p. 11, 1 plate, scale 1:500,000, online: (http://ugspub.nr.utah.gov/publications/maps/m-228/m-228.pdf).
Hoek, E., Bray, J.W., 1981, Rock Slope Engineering, revised third edition: E & FN Spon, London, p. 358.
Idriss, I.M. and Boulanger, R.W., 2010, SPT-Based Liquefaction Triggering Procedures: University of California, Davis Center for Geotechnical Modeling Report No. UCD/CGM 10/02, p. 259:
International Code Council, Inc., 2017, 2018 International Building Code: International Code Council, Country Club Hills, Illinois, p. 728, (https://codes.iccsafe.org/content/IBC2018).
Kaliser, B.N., 1972, Geologic Hazards in Morgan County with Applications to Planning Purposes, Utah Geological and Mineralogical Survey Bulletin 93, p. 56, 2 plates, online: (https://ugspub.nr.utah.gov/publications/bulletins/B-93.pdf).
Lund, W.R., Christenson, G.E., Batatian, L.D. and Nelson, C.V., 2016, Guidelines for Evaluating Surface-fault-rupture Hazards in Utah in Guidelines for Investigating Geologic Hazards and Preparing Engineering-Geology Reports, with a Suggested Approach to Geologic-Geology Ordinances in Utah: Utah Geological Survey Circular 122, p. 31-58, online: (https://ugspub.nr.utah.gov/publications/circular/c-122.pdf).
Lund, W.R. and Knudsen, T.R., 2016, Guidelines for Evaluating Rockfall Hazards in Utah in Guidelines for Investigating Geologic Hazards and Preparing Engineering-Geology Reports, with a Suggested Approach to Geologic-Hazard Ordinances in Utah: Utah Geological Survey Circular 122, p. 111-123, online:
Martin, G.R. and Lew, M., editors., 1999, Recommended Procedures for Implementation of DMG Special Publication 117, Guidelines for Analyzing and Mitigating Liquefaction Potential in California: Southern California Earthquake Center, University of Southern California, p. 63, (http://scecinfo.usc.edu/resources/catalog/LiquefactionproceduresJun99.pdf).
Mears, A.I., 1992, Snow-Avalanche Hazard Analysis for Land Use Planning and Engineering: Colorado Geological Survey Bulletin B-49, p. 55:
National Academies of Sciences, Engineering and Medicine, 2016, State of the Art and Practice in the Assessment of Earthquake-Induced Soil Liquefaction and its Consequences: The National Academies Press, online:
Newmark, N.M., 1965, Effects of Earthquakes on Dams and Embankments: Geotechnique, v. 25, no. 4.
Seed, H.B. and Idriss, I.M., 1982, Ground Motion and Soil Liquefaction During Earthquakes: Earthquake Engineering Research Institute, Oakland, California, p. 135.
Seed, R.B., Cetin, K.O., Moss, R.E.S., Kammerer, A.M., Wu, J., Pestana, J.M. and Riemer, M.F., 2001, Recent Advances in Soil Liquefaction Engineering and Seismic Site Response Evaluation, Fourth International Conference on Recent Advances in Geotechnical Earthquake Engineering and Soil Dynamics, University of Missouri-Rolla, Rolla, Missouri, 2001, Paper No. SPL-2, p. 45.
Seed, R.B., Cetin, K.O., Moss, R.E.S., Kammerer, A.M., Wu, J., Pestana, J.M. and Riemer, M.F., Sancio, R.B., Bray, J.D., Kayen, R.E. and Faris, A., 2003, Recent Advances in Soil Liquefaction Engineering: a Unified and Consistent Framework: Earthquake Engineering Research Institute Report No. EERC 2003-06, p. 71, online:
Stark, T.D., Choi, H. and McCone, S., 2005, Drained Shear Strength Parameters for Analysis of Landslides: Journal of Geotechnical and Geoenvironmental Engineering, v. 131, no. 5, pp. 575-588.
Stewart, J.P., Blake, T.M. and Hollingsworth, R.A., 2003, Development of a screen analysis procedure for seismic slope stability: Earthquake Spectra, v. 19, no. 3, pp. 697-712.
Van Horn, R. and Crittenden, Jr., M.D., 1987, Map Showing Surficial Units and Bedrock Geology of the Fort Douglas Quadrangle and Parts of the Mountain Dell and Salt Lake City North Quadrangles, Davis, Salt Lake and Morgan Counties, Utah: U.S. Geological Survey Miscellaneous Investigation Series Map I-1762, scale 1:24,000, online: (https://ngmdb.usgs.gov/Prodesc/proddesc_9901.htm).
Youd, T.L. and Idriss, I.M., editors., 1997, Proceedings of the Nceer Workshop on Evaluation of Liquefaction Resistance of Soils: National Center for Earthquake Engineering Research Technical Report NCEER 97-0022, also Youd, T.L. and Idriss, I.M., 2001, Liquefaction Resistance of Soils: Summary Report from the 1996 NCEER and 1998 NCEER/NSF Workshops on Evaluation of Liquefaction Resistance of Soils: Journal of Geotechnical and Geoenvironmental Engineering, v. 127, no. 4, April 2001, (http://www.ce.memphis.edu/7137/PDFs/Reference2/Youd%20ad%Idriss.pdf).
Youd, T.L. and Gilstrap, S.D., (1999), Liquefaction and Deformation of Silty and Fine-Grained Soils: Proceedings of the Second International Conference on Earthquake Geotechnical Engineering, Lisboa, Portugal, 21-25 June 1999, Seco e Pinto, pp. 1013-1020.
Youd, T.L., Hansen, C.M. and Bartlett, S.F., (2002), Revised MLR Equations for Predicting Lateral Spread Displacement, Asce Journal of Geotechnical and Geoenvironmental Engineering, December 2002.
Watry, S.M. and Lade, P.V., 2000, Residual Shear Strengths of Bentonites on Palos Verdes Peninsula, California: Proceedings of the session of Geo-Denver 2000, American Society of Civil Engineers, pp. 323-342.
Wyllie, D.C. and Mah, C.W., 2004, Rock Slope Engineering, Civil and Mining, 4th edition: Spon Press, New York, p. 431.
 
(Prior Code, § 8-5I-18) (Ord. 19-09, passed 10-15-2019; Ord. 21-07, passed 6-15-2021)