REFERENCES

Bein, J., and Taylor, M.L., 1981. The Eyre Sub-basin: recent exploration results. APEA J., 21:91-98.

Bone, Y., James, N.P., and Kyser, T.K., 1992. Syn-sedimentary detrital dolomite in Quaternary cool-water carbonate sediments, Lacepede Shelf, south Australia. Geology, 20:109-112.

Boreen, T.D., and James, N.P., 1993. Holocene sediment dynamics on a cool-water carbonate shelf, southeastern Australia. J. Sediment. Petrol., 63:574-588.

Davies, H.L., Clarke, J.L.A., Stagg, H.M.J., Shafik, S., McGowran, B., and Willcox, J.B., 1989. Maastrichtian and younger sediments from the Great Australian Bight. Bur. Miner. Resour. Aust. Rec., 288.

Eberli, G.P., Swart, P.K., Malone, M.J., et al., 1997. Proc. ODP, Init. Repts., 166: College Station, TX (Ocean Drilling Program).

Feary, D.A., 1995. Proposal for an ODP site survey cruise by the R/V Rig Seismic in the western Great Australian Bight. Aust. Geol. Surv. Org., 67.

Feary, D.A., and James, N.P., 1995. Cenozoic biogenic mounds and buried Miocene (?) barrier reef on a predominantly cool-water carbonate continental margin, Eucla Basin, western Great Australian Bight. Geology, 23:427-430.

————, 1998. Seismic stratigraphy and geological evolution of the Cenozoic, cool-water, Eucla Platform, Great Australian Bight. AAPG Bull., 82:792-816.

Feary, D.A., James, N.P., and McGowran, B., 1994. Cenozoic cool-water carbonates of the Great Australian Bight: reading the record of Southern Ocean evolution, sea level, paleoclimate, and biogenic production. Aust. Geol. Surv. Org., 62.

Feary, D.A., James, N.P., McGowran, B., and Smart, P.L., 1995. Cenozoic cool-water carbonates of the Great Australian Bight: reading the record of Southern Ocean evolution, sealevel, paleoclimate, and biogenic production. Aust. Geol. Surv. Org., 78.

Haq, B.U., Hardenbol, J., and Vail, P.R., 1987. Chronology of fluctuating sea levels since the Triassic. Science, 235:1156-1167.

Hegarty, K.A., Weissel, J.K., and Mutter, J.C., 1988. Subsidence history of Australia's southern margin: constraints on basin models. AAPG Bull., 72:615-633.

James, J.M., 1992. Corrosion par melange des eaux dans les grottes de la plaine de Nullarbor, Australie. In Salomon, J.N., and Maire, R. (Eds.), Karst et Evolutions Climatiques: Hommage a Jean Nicod: Talence, France (Univ. Bordeaux), 333-348.

James, J.M., Rogers, P., and Spate, A.P., 1989. Genesis of the caves of the Nullarbor Plain, Australia. Proc. 10th Int. Congr. Speleol., 263-265.

James, N.P., and Bone, Y., 1991. Origin of a cool-water, Oligo-Miocene deep shelf limestone, Eucla Platform, southern Australia. Sedimentology, 38:323-342.

James, N.P., Bone, Y., and Kyser, T.K., 1993. Shallow burial dolomitization of Cenozoic cool-water calcitic deep shelf limestones, southern Australia. J. Sediment. Petrol., 63:528-538.

James, N.P., and Kendall, A.C., 1992. Introduction to carbonate and evaporite facies models. In Walker, R.G., and James, N.P. (Eds.), Facies Models: Response to Sea Level Change: St. Johns, Newfoundland (Geol. Assoc. Can.), 265-276.

James, N.P., and von der Borch, C.C., 1991. Carbonate shelf edge off southern Australia: a prograding open-platform margin. Geology, 19:1005-1008.

Kendall, C.G.St.C., and Schlager, W., 1981. Carbonates and relative changes in sea level. In Cita, M.B., and Ryan, W.B.F. (Eds.), Carbonate Platforms of the Passive-type Continental Margins, Present and Past. Mar. Geol., 44:181-212.

Kennett, J.P., 1982. Marine Geology: Englewood Cliffs, NJ (Prentice-Hall).

Kennett, J.P., and Barker, P.F., 1990. Latest Cretaceous to Cenozoic climate and oceanographic developments in the Weddell Sea, Antarctica: an ocean-drilling perspective. In Barker, P.F., Kennett, J.P., et al., Proc. ODP, Sci. Results, 113: College Station, TX (Ocean Drilling Program), 937-960.

Kennett, J.P., and Barron, J.A., 1992. Introduction. In Kennett, J.P., and Warnke, D.A. (Eds.), The Antarctic Paleoenvironment: A Perspective on Global Change. Am. Geophys. Union, 56:1-6.

Marshall, J.F., 1986. Regional distribution of submarine cements within an epicontinental reef system: central Great Barrier Reef, Australia. In Schroeder, J.H., and Purser, B.H. (Eds.), Reef Diagenesis: Berlin (Springer-Verlag), 8-26.

McKenzie, J.A., Isern, A., Elderfield, H., Williams, A., and Swart, P., 1993. Strontium isotope dating of paleoceanographic, lithologic, and dolomitization events on the northeastern Australian margin, Leg 133. In McKenzie, J.A., Davies, P.J., Palmer-Julson, A., et al., Proc. ODP, Sci. Results, 133: College Station, TX (Ocean Drilling Program), 489-498.

Miller, K.G., Fairbanks, R.G., and Mountain, G.S., 1987. Tertiary oxygen isotope synthesis, sea-level history, and continental margin erosion. Paleoceanography, 2:1-19.

Nelson, C.S., 1988. An introductory perspective on non-tropical shelf carbonates. Sediment. Geol., 60:3-12.

Reeckmann, S.A., 1988. Diagenetic alterations in temperate shelf carbonates from southeastern Australia. In Nelson, C.S., (Ed.), Non-tropical Shelf Carbonates: Modern and Ancient. Sediment. Geol., 60:209-219.

Rockford, D.J., 1986. Seasonal changes in the distribution of Leeuwin Current waters off southern Australia. Aust. J. Mar. Freshwater Res., 37:1-10.

Sarg, J.F., 1988. Carbonate sequence stratigraphy. In Wilgus, C.K., Hastings, B.S., Kendall, C.G.St.C., Posamentier, H., Ross, C.A., and Van Wagoner, J. (Eds.), Sea-Level Changes: An Integrated Approach. Spec. Publ.—Soc. Econ. Paleontol. Mineral., 42:155-181.

Simms, M., 1984. Dolomitization by groundwater-flow systems in carbonate platforms. Trans. Gulf Coast Assoc. Geol. Soc., 34:411-420.

Stagg, H.M.J., Cockshell, C.D., Willcox, J.B., Hill, A.J., Needham, D.J.L., Thomas, B., O'Brien, G.W., and Hough, L.P., 1990. Basins of the Great Australian Bight region: geology and petroleum potential. Cont. Marg. Progr., Bur. Miner. Resour. Aust., Fol., 5.

Vahrenkamp, V.C., Swart, P.K., and Ruiz, J., 1991. Episodic dolomitization of late Cenozoic carbonates in the Bahamas: evidence from strontium isotopes. J. Sediment. Petrol., 61:1002-1014.

Willcox, J.B., Stagg, H.M.J., Davies, H.L., et al., 1988. Rig Seismic research cruises 10 & 11: geology of the Central Great Australian Bight region. Rep.—Bur. Mineral Resour. Geol. Geophys. (Aust.), 286.