Next Section | Table of Contents

APPENDIX OF USEFUL REFERENCES

Alberty, M., 2000. Shallow water flows: a problem solved or a problem emerging. Proc.—Annu. Offshore Technol. Conf., 32:1–7.

Alberty, M., Hafle, M., Minge, J.C., and Byrd, T., 1997. Mechanisms of shallow waterflows and drilling practices for intervention. Proc.—Annu. Offshore Technol. Conf., 29:1–6.

Anderson, R.N., and Fillon, R.H. (Ed.), 2004. Late Quaternary Stratigraphic Evolution of the Northern Gulf of Mexico Margin. Spec. Publ.—SEPM (Soc. Sediment. Geol.), 79.

Aplin, A.C., Yang, Y., and Hansen, S., 1995. Assesment of b, the compression coefficient of mudstones and its relationship with detailed lithology. Mar. Pet. Geol., 12:955–963.

Ask, M.V.S., 2001. Mechanical tests on claystone from Ocean Drilling Program Hole 1070A (Leg 173)—implications for elevated pore-fluid pressure in sediments within the ocean–continent transition zone, west Iberia. Mar. Geol., 177:395–410.

Athy, L.F., 1930. Density, porosity, and compaction of sedimentary rocks. AAPG Bull., 14:1–24.

Austin, J.A., Jr., Christie-Blick, N., Malone, M.J., et al., 1998. Proc. ODP, Init. Repts., 174A: College Station, TX (Ocean Drilling Program).

Badalini, G., Kneller, B., and Winker, C.D., 2000. Architecture and processes in the late Pleistocene Brazos–Trinity turbidite system, Gulf of Mexico continental slope. Deep-Water Reservoirs of the World: Proc. GCSSEPM 20th Annu. Res. Conf., 16–34.

Bangs, N.L.B., Shipley, T.H., and Moore, G.F., 1996. Elevated fluid pressures and fault zone dilation inferred from seismic models of the northern Barbados Ridge décollement. J. Geophys. Res., 101:627–642.

Bangs, N.L.B., Westbrook, G.K., Ladd, J.W., and Buhl, P., 1990. Seismic velocities from the Barbados Ridge Complex: indicators of high pore fluid pressures in an accretionary complex. J. Geophys. Res., 95:8767–8782.

Beaubouef, R.T., Abreu, V., and Van Wagoner, J.C., 2003. Basin 4 of the Brazos–Trinity slope system, western Gulf of Mexico: the terminal portion of a late Pleistocene lowstand system tract. Shelf Margin Deltas and Linked Down Slope Petroleum Systems: Global Significance and Future Exploration Potential: Proc. GCSSEPM 23rd Annu. Res. Conf., 45–66.

Beard, J.H., Sangree, J.B., and Smith, L.A., 1982. Quaternary chronology, paleoclimate, depositional sequences, and eustatic cycles. AAPG Bull., 66:158–169.

Berryhill, H.L., and Suter, J.R., 1986. Late Quaternary facies and structures, northern Gulf of Mexico. AAPG Stud. Geol., 23.

Bethke, C.M., 1986. Inverse hydrologic analysis of the distribution and origin of Gulf Coast-type geopressured zones. J. Geophys. Res., 91(B6):6535–6545.

Biot, M.A., 1941. General theory of three-dimensional consolidation. J. Appl. Phys., 12:155–164.

Bitzer, K., 1996. Modeling consolidation and fluid flow in sedimentary basins. Comp. Geosci., 22:467–478.

Bjorlykke, K., 1993. Fluid flow in sedimentary basins. Sediment. Geol., 86:137–158.

Bjorlykke, K., 1997. Effects of burial diagenesis on stresses, compaction and fluid flow in sedimentary basins. Mar. Pet. Geol., 14:267–276.

Boehm, A., and Moore, J.C., 2002. Fluidized sandstone intrusions as an indicator of paleostress orientation, Santa Cruz, California. Geofluids, 2(2):147–161.

Booth, J.S., O'Leary, D.W., Popenoe, P., and Danforth, W.W., 1993. U.S. Atlantic continental slope landslides: their distribution, general attributes, and implications. In Schwab, W.C., and Twichell, D.C. (Eds.), Submarine Landslides: Selected Studies in the U.S. Exclusive Economic Zone: Reston, VA (U.S. Geol. Surv.), 14–22.

Bouma, A.H., and Roberts, H.H., 1990. Northern Gulf of Mexico continental slope. Geo-Mar. Lett., 10:177–181.

Bowers, G.L., 1994. Pore pressure estimation from velocity data: accounting for overpressure mechanisms besides undercompaction. Proc.—IADC/SPE Drill. Conf., 515–530.

Brami, T.R., Pirmez, C., Archie, C., and Holman, K.L., 2000. Late Pleistocene deep-water stratigraphy and depositional processes, offshore Trinidad and Tobago. Deep-Water Reservoirs of the World: Proc. GCSSEPM 20th Annu. Res. Conf.

Brand, J.R., Lanier, D.L., Berger, W.J., III, Kasch, V.R., and Young, A.G., 2003. Relationship between near seafloor seismic amplitude, impedance, and soil shear strength properties and use in prediction of shallow seated slope failure. Proc.—Annu. Offshore Technol. Conf., 35:1–8.

Bredehoeft, J.D., and Hanshaw, B.B., 1968. On the maintenance of anomalous fluid pressures: 1. Thick sedimentary sequences. Geol. Soc. Am. Bull., 79:1097–1106.

Brown, A., 2003. Improved interpretation of wireline pressure data. AAPG Bull., 87:295–311.

Brown, K., 1994. Fluids in deforming sediments. In Maltman, A. (Ed.), The Geological Deformation of Sediments: London (Chapman and Hall), 205–237.

Bruce, B., Borel, R., and Bowers, G., 2002. Well planning for SWF and overpressure at the Kestrel Well. Leading Edge, 21(7):669–671.

Bruce, B., Bowers, G., and Borel, R., 2001. Well planning for shallow water flows and overpressures—the Kestrel well. Proc.—Annu. Offshore Technol. Conf., 33:1–10.

Bruce, B., and Bowers, G.L., 2002. Pore pressure terminology. Leading Edge, 21(2):170–173.

Bryant, W.R., Bryant, J.R., Feeley, M.H., and Simmons, G.R., 1990. Physiographic and bathymetric characteristics of the continental slope, northwest Gulf of Mexico. Geo-Mar. Lett., 10:182–199.

Byrd, T.M., Schneider, J.M., Reynolds, D.J., Alberty, M.W., and Hafle, M.E., 1996. Identification of "flowing water sand" drilling hazards in the deepwater Gulf of Mexico. Proc.—Annu. Offshore Technol. Conf., 28:137–146.

Coleman, J.M., and Roberts, H.H., 1988. Late Quaternary depositional framework of the Louisiana continental shelf and upper continental slope. Trans.—Gulf Coast Assoc. Geol. Soc., 407–419.

Corthay, J.E., II, and Aliyev, A.A., 2000. Delineation of a mud volcano complex, surficial mudflows, slump blocks, and shallow gas reservoirs, offshore Azerbaijan. Proc.—Annu. Offshore Technol. Conf., 32:1–11.

Dean, M.C., King, K.M., and Booth, J.R., 2000. The present is the key to the Plio–Pleistocene: seafloor analogues at Shell's GB 516 Serrano discovery. Deep-Water Reservoirs of the World: Proc. GCSSEPM 20th Annu. Res. Conf., 293–303.

Dickinson, G., 1953. Geological aspects of abnormal reservoir pressures in Gulf Coast Louisiana. AAPG Bull., 37:410–432.

Doyle, E.H., 1998. The integration of deepwater geohazard evaluations and geotechnical studies. Proc.—Annu. Offshore Technol. Conf., 30:11–18.

Driscoll, N.W., Weissel, J.K., and Goff, J.A., 2000. Potential for large-scale submarine slope failure and tsunami generation along the U.S. mid-Atlantic coast. Geology, 28:407–410.

Dugan, B., and Flemings, P.B., 2000. Overpressure and fluid flow in the New Jersey continental slope: implications for slope failure and cold seeps. Science, 289:288–291.

Dugan, B., and Flemings, P.B., 2002. Fluid flow and stability of the US continental slope offshore New Jersey from the Pleistocene to the present. Geofluids, 2:137–146.

Dugan, B., Flemings, P.B., Olgaard, D.L., and Gooch, M.J., 2003. Consolidation, effective stress, and fluid pressure of sediments from ODP Site 1073, US mid-Atlantic continental slope. Earth Planet. Sci. Lett., 215:13–26.

Eaton, B.A., 1975. The equation for geopressure prediction from well logs: Society of Petroleum Engineers.

Eaton, L.F., 1999. Drilling through deepwater shallow water flow zones at Ursa. Proc.—SPE/IADC Middle East Drill. Conf., 153–164.

Feeley, M.H., Moore, T.C., Jr., Loutit, T.S., and Bryant, W.R., 1990. Sequence stratigraphy of Mississippi fan related to oxygen isotope sea level index. AAPG Bull., 74:407–424.

Fertl, W.H., 1976. Abnormal Formation Pressures: Implications to Exploration, Drilling, and Production of Oil and Gas Resources: Amsterdam (Elsevier).

Finkbeiner, T., Zoback, M., Flemings, P., and Stump, B., 2001. Stress, pore pressure, and dynamically constrained hydrocarbon columns in the south Eugene Island 330 field, northern Gulf of Mexico. AAPG Bull., 85(6):1007–1031.

Fisk, H.N., and McFarlan, E., 1955. Late Quaternary deltaic deposits of the Mississippi River. Spec. Pap.—Geol. Soc. Am., 279–302.

Flemings, P.B., Comisky, J., Liu, X., and Lupa, J.A., 2001. Stress-controlled porosity in overpressured sands at Bullwinkle (GC65), deepwater Gulf of Mexico. Proc.—Annu. Offshore Technol. Conf., 33:1–7.

Flemings, P.B., Stump, B.B., Finkbeiner, T., and Zoback, M., 2002. Flow focusing in overpressured sandstones: theory, observations, and applications. Am. J. Sci., 302:827–855.

Flood, R.D., Piper, D.J.W., Klaus, A., et al., 1995. Proc. ODP, Init. Repts., 155: College Station, TX (Ocean Drilling Program).

Flood, R.D., Piper, D.J.W., Klaus, A., and Peterson, L.C. (Eds.), 1997. Proc. ODP, Sci. Results, 155: College Station, TX (Ocean Drilling Program).

Foucher, J.-P., Henry, P., and Harmegnies, F., 1997. Long-term observations of pressure and temperature in Hole 948D, Barbados accretionary prism. In Shipley, T.H., Ogawa, Y., Blum, P., and Bahr, J.M. (Eds.), Proc. ODP, Sci. Results, 156: College Station, TX (Ocean Drilling Program), 239–245.

Fraticelli, C.M., 2003. Linking climate, sea level, and sedimentary response on the Texas shelf and upper slope: examples from the Brazos and Colorado fluvial-deltaic system [Ph.D. dissert.]. Rice Univ., Houston, TX.

Gaarenstroom, L., Tromp, R.A.J., de Jong, M.C., and Brandenburg, A.M., 1993. Overpressures in the central North Sea: implications for trap integrity and drilling safety. Pet. Geol. Northwest Europe: Proc. 4th Conf., 4:1305–1313.

Gallo, F., and Woods, A.W., 2004. On steady homogeneous sand-water flows in a vertical conduit. Sedimentology, 51:195–210.

Gibson, R.E., 1958. The progress of consolidation in a clay layer increasing in thickness with time. Geotechnique, 8:171–182.

Goodwin, R.H., and Prior, D.B., 1988. Geometry and depositional sequences of the Mississippi Canyon, Gulf of Mexico. J. Sediment. Petrol., 59:318–329.

Gordon, D.S., and Flemings, P.B., 1998. Generation of overpressure and compaction-driven fluid flow in a Plio–Pleistocene growth-faulted basin, Eugene Island 330, offshore Louisiana. Basin Res., 10:177–196.

Goulty, N.R., 1998. Relationships between porosity and effective stress in shales. First Break, 16:413–419.

Goulty, N.R., 2004. Mechanical compaction behavior of natural clays and implications for pore pressure estimation. Pet. Geosci., 10:73–79.

Grauls, D., Dunard, J.P., and Beaufort, D., 1995. Predicting abnormal pressure from 2D seismic velocity modeling. Proc.—Annu. Offshore Technol. Conf., 27:525–534.

Hackbarth, C.J., and Shew, R.D., 1994. Morphology and stratigraphy of a mid-Pleistocene turbidite leveed channel from seismic, core, and log data, northeastern Gulf of Mexico. In Bouma, A.H., and Perkins, B.G. (Eds.), Submarine Fans and Turbidite Systems: Proc. GCSSEPM 15th Annu. Res. Conf., 127–133.

Ham, H.H., 1966. A method of estimating formation pressures from Gulf Coast well logs. Trans.—Gulf Coast Assoc. Geol. Soc., 16:185–197.

Hampton, M.A., 1996. Submarine landslides. Rev. Geophys., 34:33–59.

Hardin, N.S., 1986. Mass transport deposits of the upper continental slope, northwestern Gulf of Mexico. AAPG Bull., 23:241–285.

Harrison, W.J., and Summa, L.L., 1991. Paleohydrology of the Gulf of Mexico Basin. Am. J. Sci., 291:109–176.

Harrold, T.W.D., Swarbrick, R.E., and Goulty, N.R., 1999. Pore pressure estimation from mudrock porosities in Tertiary basins, southeast Asia. AAPG Bull., 83:1057–1067.

Hart, B.S., Flemings, P.B., and Deshpande, A., 1995. Porosity and pressure: role of compaction disequilibrium in the development of geopressures in a Gulf Coast Pleistocene basin. Geology, 23:45–48.

Huffman, A.R., and Castagna, J.P., 1999. Rock physics and mechanics considerations for shallow water flow characterization [International Forum on Shallow Water Flows, League City, TX, 6–8 Oct., 1999].

Imbrie, J., Hays, J.D., Martinson, D.G., McIntyre, A., Mix, A.C., Morley, J.J., Pisias, N.G., Prell, W.L., and Shackleton, N.J., 1984. The orbital theory of Pleistocene climate: support from a revised chronology of the marine _18O record. In Berger, A., Imbrie, J., Hays, J., Kukla, G., and Saltzman, B. (Eds.), Milankovitch and Climate (Pt. 1): Hingman, MA (D. Riedel Publ. Co.), 269–305.

Jeanjean, P., Hill, A., and Thomson, J., 2003. The case for confidently siting facilities along the Sigsbee escarpment in the southern Green Canyon area of the Gulf of Mexico: summary and conclusions from integrated studies. Proc.—Annu. Offshore Technol. Conf., 35:

Johnson, D.W., 1939. The Origin of Submarine Canyons: A Critical Review of Hypotheses: New York (Hafner).

Jolly, R.H., and Lonergan, L., 2002. Mechanisms and controls on the formation of sand intrusions. J. Geol. Soc. (London, U. K.), 159:605–617.

Jones, M., 1994. Mechanical principles of sediment deformation. In Maltman, A., (Ed.), The Geological Deformation of Sediments: London (Chapman and Hall), 37–71.

Joyce, J.E., Tjalsma, L.R.C., and Prutzman, J.M., 1990. High-resolution planktic stable isotope record and spectral analysis for the last 5.35 m.y.: Ocean Drilling Program Site 625 Northeast Gulf of Mexico. Paleoceanography, 5:507–529.

Karig, D., 1992. High-stress consolidation experiments and their geologic implications. J. Geophys. Res., 97:289–300.

Karig, D.E., 1996. Uniaxial reconsolidation tests on porous sediments: mudstones from Site 897. In Whitmarsh, R.B., Sawyer, D.S., Klaus, A., and Masson, D.G. (Eds.), Proc. ODP, Sci. Results, 149: College Station, TX (Ocean Drilling Program), 363–373.

Kennett, J.P., Elstrom, K., and Penrose, N., 1985. Late Pleistocene paleoclimatology, foraminiferal biostratigraphy, and tephrochronology: western Gulf of Mexico. Quat. Res., 2:38–69.

Kohl, B., and Roberts, H.H., 1994. Fossil foraminifera from four active mud volcanoes in the Gulf of Mexico. Geo-Mar. Lett., 14:126–134.

Kolla, V., and Perlmutter, M.A., 1993. Timing of turbidite sedimentation on the Mississippi Fan. AAPG Bull., 77:1129–1141.

Koppula, S.D., and Morgenstern, N.R., 1982. On the consolidation of sedimenting clays. Can. Geotech. J., 19:260–268.

Lambeck, K., and Chappell, J., 2001. Sea level change through the last glacial cycle. Science, 292:679–686.

Lee, G.H., Watkins, J.S., and Bryant, W.R., 1996. Bryant Canyon fan system: an unconfined, large-river turbidity system in the northwestern Gulf of Mexico. AAPG Bull., 80:340–358.

Li, Y.-H., and Gregory, S., 1974. Diffusion of ions in seawater and deep sea sediments. Geochim. Cosmochim. Acta, 38:703–714.

Lupa, J., Flemings, P.B., and Tennant, S., 2002. Pressure and trap integrity in the deepwater Gulf of Mexico. Leading Edge, 21:184–187.

MacDonald, I.R., Guinasso, N.L., Jr., Reilly, J.F., Brooks, J.M., Callender, W.R., and Gabrielle, S.G., 1990. Gulf of Mexico hydrocarbon seep communities: VI. Patterns in community structure and habitat. Geo-Mar. Lett., 10:244–252.

Mahaffie, M.J., 1994. Reservoir classification for turbidite intervals at the Mars discovery, Mississippi Canyon Block 807, Gulf of Mexico. In Bouma, A.H., and Perkins, B.G. (Eds.), Submarine Fans and Turbidite Systems: Proc. GCSSEPM 15th Annu. Res. Conf., 233–244.

Maltman, A.J., 1994. Introduction and overview. In Maltman, A. (Ed.), The Geological Deformation of Sediments: London (Chapman and Hall), 1–35.

Mann, D.M., and Mackenzie, A.S., 1990. Prediction of pore fluid pressures in sedimentary basins. Mar. Pet. Geol., 7:55–65.

Martin, R.E., Johnson, G.W., Neff, E.D., and Krantz, D.W., 1990. Quaternary planktonic foraminiferal assemblage zones of the northeast Gulf of Mexico, Columbia Basin (Caribbean Sea), and tropical Atlantic Ocean: graphic correlation of microfossil and oxygen isotope datums. Paleoceanography, 5:531–555.

McAdoo, B.G., Pratson, L.F., and Orange, D.L., 2000. Submarine landslide geomorphology, U.S. continental slope. Mar. Geol., 169:103–136.

McFarlan, E., and LeRoy, D.O., 1988. Subsurface geology of the late Tertiary and Quaternary deposits, coastal Louisiana, and the adjacent continental shelf. Trans.— Gulf Coast Assoc. Geol. Soc., 421–433.

Mello, U.T., and Pratson, L.F., 1999. Regional slope stability and slope-failure mechanics from the two-dimensional state of stress in an infinite slope. Mar. Geol., 154:339–356.

Moore, J.C., Shipley, T.H., Goldberg, D., Ogawa, Y., Filice, F., Fisher, A., Jurado, M.-J., Moore, G.F., Rabaute, A., Yin, H., Zwart, G., and Brueckmann, W., Henry, P., Ashi, J., Blum, P., Meyer, A., Housen, B., Kastner, M., Labaume, P., Laier, T., Leitch, E.C., Maltman, A.J., Peacock, S., Steiger, T.H., Tobin, H.J., Underwood, M.B., Xu, Y., Zheng, Y., 1995. Abnormal fluid pressures and fault zone dilation in the Barbados accretionary prism: evidence from logging while drilling. Geology, 23:605–608.

Morton, R.A., and Suter, R.J., 1996. Sequence stratigraphy and composition of late Quaternary shelf-margin deltas, northern Gulf of Mexico. AAPG Bull., 80:505–530.

Nations, J.F., and Medley, G.H., Jr., 1997. DeepStar's evaluation of shallow water flow problems in the Gulf of Mexico. Proc.—Annu. Offshore Technol. Conf., 29:1–6.

Neurauter, T.W., and Bryant, W.R., 1990. Seismic expression of sedimentary volcanism on the continental slope, northern Gulf of Mexico. Geo-Mar. Lett., 10:225–231.

Niedoroda, A.W., Reed, C.W., Hatchett, L., Young, A., Lanier, D., Kasch, V., Jeanjean, P., Orange, D., and Bryant, W., 2003. Analysis of past and future debris flows and turbidity currents generated by slope failures along the Sigsbee escarpment in the deep Gulf of Mexico. Proc.—Annu. Offshore Technol. Conf., 35:1–7.

Nisbet, E.G., and Piper, D.J., 1998. Giant submarine landslides. Nature, 392:329–330.

Nur, A., Mavko, G., Dvorkin, J., and Galmudi, D., 1998. Critical porosity: a key to relating physical properties to porosity in rocks. Leading Edge, 17:357–362.

Orange, D.L., Saffer, D., Jeanjean, P., Al-Khafaji, Z., Riley, G., and Humphrey, G., 2003. Measurements and modeling of the shallow pore pressure regime at the Sigsbee escarpment: successful prediction of overpressure and ground-truthing with borehole measurements. Proc.—Annu. Offshore Technol. Conf., 35:1–11.

Ostermeier, R.M., Pelletier, J.H., Winker, C.D., and Nicholson, J.W., 2001. Trends in shallow sediment pore pressures. Proc.—SPE/IADC Drill. Conf., 1–11.

Ostermeier, R.M., Pelletier, J.H., Winker, C.D., Nicholson, J.W., and Cowan, C.K., 2002. Dealing with shallow-water flow in the deepwater Gulf of Mexico. Leading Edge, 21(7):660, 662–668.

Ostermeier, R.M., Pelletier, J.H., Winker, C.D., Nicholson, J.W., Rambow, F.H., and Cowan, K.M., 2000. Dealing with shallow-water flow in the deepwater Gulf of Mexico. Proc. Offshore Tech. Conf., 32(1):75–86.

Palciauskas, V.V., and Domenico, P.A., 1989. Fluid pressures in deforming porous rocks. Water Resour. Res., 25:203–213.

Paull, C.K., Buelow, W.J., Ussler, W., III, and Borowski, W.S., 1996. Increased continental margin slumping frequency during sea-level lowstands above gas hydrate-bearing sediments. Geology, 24:143–146.

Pelletier, J.H., Ostermeier, R.M., Winker, C.D., Nicholson, J.W., and Rambow, F.H., 1999. Shallow water flow sands in the deepwater Gulf of Mexico: some recent Shell experience [International Forum on Shallow Water Flows Conference, League City, TX, 6–8 Oct., 1999].

Pirmez, C., Beaubouef, R.T., Friedmann, S.J., and Mohrig, D.C., 2000. Equilibrium profile and base level in submarine channels: examples from late Pleistocene systems and implications for the architecture of deepwater reservoirs. Deep-Water Reservoirs of the World: Proc. GCSSEPM 20th Annu. Res. Conf., 782–805.

Posamentier, H., and Kolla, V., 2003. Seismic geomorphology and stratigraphy of depositional elements in deep-water settings. J. Sediment. Res., 73:367–388.

Prather, B.E., Booth, J.R., Steffens, G.S., and Craig, P.A., 1998. Classification, lithologic calibration, and stratigraphic succession of seismic facies of intraslope basins, deep-water Gulf of Mexico. AAPG Bull., 82:701–728.

Pratson, L.F., and Ryan, W.B.F., 1994. Pliocene to Recent infilling and subsidence of intraslope basins offshore Louisiana. AAPG Bull., 78:1483–1506.

Prior, D.B., Bornhold, B.D., and Johns, M.W., 1984. Depositional characteristics of a submarine debris flow. J. Geol., 92:707–727.

Pulham, A.J., 1993. Variations in slope deposition, Pliocene–Pleistocene, offshore Louisiana, northeast Gulf of Mexico. In Posamentier, H., and Weimer, P. (Eds.), Siliclastic Sequence Stratigraphy: Recent Developments and Applications. AAPG Mem., 58:199–233.

Revil, A., Cathles, L.M., III, Shosa, J.D., Pezard, P.A., and de Larouziere, F.D., 1998. Capillary sealing in sedimentary basins: a clear field example. Geophys. Res. Lett., 25:389–392.

Revil, A., Pezard, P.A., and de Larouzière, F.D., 1999. Fluid overpressures in western Mediterranean sediments, Sites 974–979. In Zahn, R., Comas, M.C., and Klaus, A. (Eds.), Proc. ODP, Sci. Results, 161: College Station, TX (Ocean Drilling Program), 117–128.

Reynolds, T., 2000. Reservoir architecture in the Mars field, deepwater Gulf of Mexico, U.S.A.: the implications of production, seismic, core, and well-log data. Deep-Water Reservoirs of the World: Proc. GCSSEPM 20th Annu. Res. Conf.

Riggins, M., 1992. Consolidation and strength assessment of deep-ocean sediments from the Argo and Gascoyne abyssal plains, Indian Ocean. In Gradstein, F.M., Ludden, J.N., et al., Proc. ODP, Sci. Results, 123: College Station, TX (Ocean Drilling Program), 493–501.

Roberts, H.H., 1992. Reefs, bioherms, and lithoherms of the northern Gulf of Mexico: the important role of hydrocarbon seeps. Proc. Int. Coral Reef Symp. (7th), 1121–1128.

Roberts, H.H., and Carney, R.S., 1997. Evidence of episodic fluid, gas and sediment venting on the northern Gulf of Mexico continental slope. Econ. Geol., 92:863–879.

Roberts, S.J., and Nunn, J.A., 1995. Episodic fluid expulsion from geopressured sediments. Mar. Pet. Geol., 12:195–204.

Roberts, S.J., Nunn, J.A., Cathles, L., and Cipriani, F.-D., 1996. Expulsion of abnormally pressured fluids along faults. J. Geophys. Res., [Solid Earth Planets], 101:28231–28252.

Rubey, W.W., and Hubbert, M.K., 1959. Role of fluid pressure in mechanics of overthrust faulting, Part 2. Overthrust belt in geosynclinal area of western Wyoming in light of fluid-pressure hypothesis. Geol. Soc. Am. Bull., 70:167–205.

Saffer, D.M., Silver, E.A., Fisher, A.T., Tobin, H., and Moran, K., 2000. Inferred pore pressures at the Costa Rica subduction zone: implications for dewatering processes. Earth Planet. Sci. Lett., 177:193–207.

Saller, A.H., Noah, J.T., Ruzuar, A.P., and Schneider, R., 2004. Linked lowstand delta to basin-floor fan deposition, offshore Indonesia: an analog for deep-water reservoir systems. AAPG Bull., 88:21–46.

Schofield, K., and Serbeck, J., 2000. The "above magenta" reservoir at Ursa field: a classic process-response model to explain a classic wireline log signature. Deep-Water Reservoirs of the World: Proc. GCSSEPM 20th Annu. Res. Conf., 894–910.

Schultheiss, P.J., and McPhail, S.D., 1986. Direct indication of pore water advection from pore pressure measurements in Madeira Abyssal Plain sediments. Nature, 320:348–350.

Shaub, F.J., Buffler, R.T., and Parsons, J.G., 1984. Seismic stratigraphic framework of deep central Gulf of Mexico basin. AAPG Bull., 68:1790–1802.

Silva, A.J., Baxter, C., Bryant, W.R., Bradshaw, A., and LaRosa, P., 2000. Stress-strain behavior and stress state of Gulf of Mexico clays in relation to slope processes. Proc. Offshore Tech. Conf., 32(1):451–460.

Slowey, N., Bryant, W., Bean, D.A., Young, A.G., and Gartner, S., 2003. Sedimentation in the vicinity of the Sigsbee escarpment during the last 25,000 yrs. Proc. Offshore Tech. Conf., 35:1–15.

Stelting, C.E., Pickering, K.T., Bouma, A.H., Coleman, J.M., Cremer, M., Droz, L., Wright Meyer, A.A., Normark, W.R., O'Connell, S., Stow, D.A.V., and DSDP Leg 96 Shipboard Scientists, 1985. Drilling results on the middle Mississippi Fan. In Bouma, A.H., Normark, W.R., and Barnes, N.E. (Eds.), Submarine Fans and Related Turbidite Systems: New York (Springer), 275–282.

Stiles, D.A., 1997. Successful cementing in areas prone to shallow saltwater flows in deep-water Gulf of Mexico. Proc. Offshore Tech. Conf., 29(1):269–276.

Styzen, M.J., 1996. A chart in two sheets of the late Cenozoic chronostratigraphy of the Gulf of Mexico. Gulf Coast Section, Society of Economic Paleontologists and Mineralogists.

Sultan, N., Cochonat, P., Bourillet, J.F., Cayocca, F., and Colliat, J.L., 2001. Back-analysis of submarine slumping in the Gabon continental slope: a pseudo-3D approach. Proc. Offshore Tech. Conf., 33(2):821–834.

Suter, J.R., and Berryhill, H.L., Jr., 1985. Late Quaternary shelf-margin deltas, northwest Gulf of Mexico. AAPG Bull., 69:77–91.

Swarbrick, R.E., 2001. Pore-pressure prediction: pitfalls in using porosity. Proc. Offshore Tech. Conf., 33(2):27–36.

Templeton, J.S., III, Murff, J.D., Goodwin, R.H., and Klejbuk, L.W., 1985. Evaluating soils and hazards in the Mississippi Canyon. Proc. Offshore Tech. Conf., 17(3):63–72.

Terzaghi, K., 1956. Varieties of Submarine Slope Failures. Proc. 8th Texas Conf. Soil Mech. Found. Eng., 1–42.

Toniolo, H., 2002. Experiments and theoretical models of debris-flows and turbidity currents (Ph.D. dissert.). Univ. Minnesota, Minneapolis.

Traugott, M., Heppard, P., and Dodd, T., 1999. Pressure prediction for shallow water evaluation [International Forum on Shallow Water Flows, League City, TX, 6–8 Oct., 1999].

Traugott, M.O., 1997. Pore/fracture pressure determinations in deep water. Deepwater Tech. (World Oil suppl.), 68–70.

Turner, K.M., and Morales, L.J., 2000. Riserless drilling with CaCl2 mud prevents shallow water flows. Proc.—IADC/SPE Drill. Conf., 1–8.

Walls, J., Dvorkin, J., Mavko, G., and Nur, A., 2000. Use of compressional and shear wave velocity for overpressure detection. Proc. Offshore Tech. Conf., 32(2):199–203.

Weimer, P., 1990. Sequence stratigraphy, facies geometries, and depositional history of the Mississippi Fan, Gulf of Mexico. AAPG Bull., 74:425–453.

Weimer, P., and Buffler, R.T., 1988. Distribution and seismic facies of Mississippi Fan channels. Geology, 16:900–903.

Winker, C.D., 1996. High-resolution seismic stratigraphy of a late Pleistocene submarine fan ponded by salt-withdrawal minibasins on the Gulf of Mexico continental slope. Proc. 3rd Annu. Offshore Technol. Conf., 28(1):619–628.

Winker, C.D., and Booth, J.R., 2000. Sedimentary dynamics of the salt-dominated continental slope, Gulf of Mexico: integration of observations from the seafloor, near-surface, and deep subsurface. Deep-Water Reservoirs of the World: Proc. GCSSEPM 20th Annu. Res. Conf., 1059–1086.

Winker, C.D., and Shipp, R.C., 2002. Sequence stratigraphic framework for prediction of shallow water flow in the greater Mars-Ursa area, Mississippi Canyon area, Gulf of Mexico continental slope [22nd Annual GCSSEPM Foundation Bob F. Perkins Research Conference, Houston, TX, 8–11 Dec., 2002]. (Abstract)

Winters, W.J., 2000. Stress history and geotechnical properties of sediment from the Cape Fear Diapir, Blake Ridge Diapir, and Blake Ridge. In Paull, C.K., Matsumoto, R., Wallace, P.J., and Dillon, W.P. (Eds.), Proc. ODP, Sci. Results, 164: College Station, TX (Ocean Drilling Program), 421–429.

Worrall, D.M., and Snelson, S., 1989. Evolution of the northern Gulf of Mexico, with emphasis on Cenozoic growth faulting and the role of salt. In Bally, A.W., and Paler, A.R. (Eds.), The Geology of North America—An Overview (Vol. A): Boulder, CO (Geol. Soc. Am.), 97–137.

Yardley, G.S., Aplin, A., Macleod, G., Osborne. M.J., and Swarbrick, R.E., 1998. Pore pressure enhancement at structural crests by lateral transfer [American Association of Drilling Engineers Industry Forum on Pressure Regimes in Sedimentary Basins and their Prediction, Lake Conroe, TX, 2–4 Sept., 1998].

Yardley, G.S., Aplin, A., Macleod, G., Osborne. M.J., and Swarbrick, R.E., 1998. Pore pressure enhancement at structural crests by lateral transfer [American Association of Drilling Engineers Industry Forum on Pressure Regimes in Sedimentary Basins and their Prediction, Lake Conroe, TX, 2–4 Sept. 1998].

Yardley, G.S., and Swarbirck, R.E., 2000. Lateral transfer: a source of additional overpressure? Mar. Pet. Geol., 17:523–537.

Zoback, M.D., and Healy, J.H., 1984. Friction, faulting and in situ stress. Ann. Geophys., 2:689–698.

Next Section | Table of Contents