Geology Reference
In-Depth Information
oolitic sedimentary architecture: Miami Limestone, Florida,
U.S.A. J Sediment Res 78:638-653
Neumann AC, Macintyre I (1985) Reef response to sea level
rise: keep-up, catch-up or give-up. In: Proceedings of the 5th
international coral reef congress, Tahiti, 27 May-1 June
1985, vol 3, pp 105-110
Neumann CJ, Cry GW, Caso EE, Jarvinen BR (1978) Tropical
cyclones of the North Atlantic Ocean, 1871-1977. National
Climatic Center, Asheville, 170 p
Newell ND, Rigby JK (1957) Geological studies on the Great
Bahama Bank. In: Le Blanc RJ, Breeding JG (eds) Regional
aspects of carbonate deposition. Soc Econ Paleontol Miner
Spec Publ 5:15-72
Newell ND, Imbrie J, Purdy EG, Thurber DL (1959) Organism
communities and bottom facies, Great Bahama Bank. Bull
Am Mus Natl Hist 117:177-228
Newell ND, Purdy EG, Imbrie J (1960) Bahamian oolitic sand.
J Geol 68:481-497
Off T (1963) Rhythmic linear sand bodies caused by tidal cur-
rents. Am Assoc Petrol Geol Bull 47:324-341
Opdyke BN, Wilkinson BH (1990) Paleolatitude distribution of
Phanerozoic marine ooids and cements. Palaeogeogr
Palaeoclim Palaeoecol 78:1-14
Palmer MS (1979) Holocene facies geometry of the leeward
bank margin, Tongue of the Ocean, Bahamas. MS thesis,
University of Miami, Miami, FL, 199 p
Prager EJ, Southard JB, Vivoni-Gallart ER (1996) Experiments
on the entrainment threshold of well-sorted and poorly sorted
carbonate sands. Sedimentology 43:33-40
Purdy EG (1961) Bahamian oolite shoals. In: Peterson JA,
Osmond JC (eds) Geometry of sandstone bodies. American
Association of Petroleum Geologists Studies in Geology,
Tulsa, pp 53-63
Purdy EG (1963) Recent calcium carbonate facies of the Great
Bahama Bank. 2. Sedimentary facies. J Geol 71:472-497
Rankey EC, Reeder SL (2009) Holocene ooids of Aitutaki Atoll,
Cook Islands, South Pacifi c. Geology 37:971-974
Rankey EC, Reeder SL (2010) Controls on platform-scale pat-
terns of surface sediments, shallow Holocene platforms,
Bahamas. Sedimentology 57:1545-1565
Rankey EC, Reeder SL (2011) Holocene oolitic marine sand
complexes of the Bahamas. J Sediment Res 81:97-117
Rankey EC, Riegl B, Steffen K (2006) Form and function in a
tidally dominated ooid shoal, Bahamas. Sedimentology
53:1191-1210
Rankey EC, Reeder SL, Correa TBS (2008) Geomorphology
and sedimentology of Ambergris ooid shoal, Caicos Platform.
In: Morgan WA, Harris PM (eds) Developing models and
analogs for isolated carbonate platforms - Holocene and
Pleistocene carbonates of Caicos Platform, British West
Indies SEPM (Society for Sedimentary Geology) Core work-
shop, vol 22, pp 127-132
Reeder SL, Rankey EC (2008) Interactions between tidal fl ows
and ooid shoals, northern Bahamas. J Sediment Res
78:175-186
Reeder SL, Rankey EC (2009a) An integrated fi eld, remote
sensing, and modeling study examining the impact of
Hurricanes Frances and Jeanne on carbonate systems,
Bahamas. In: Swart PK, Eberli GP, McKenzie JA (eds)
Perspectives in carbonate geology: a tribute to the career of
Robert Nathan Ginsburg. IAS special publication 41. Wiley-
Blackwell, Oxford, pp 75-90
Reeder SL, Rankey EC (2009b) Controls on morphology and
sedimentology of carbonate tidal deltas, Abacos, Bahamas.
Mar Geol. http://dx.doi.org/10.1016/j.margeo.2009.09.010
Rich JL (1948) Submarine sedimentary features on Bahama
Banks and their bearing on distribution patterns of lenticular
oil sands. Am Assoc Petrol Geol Bull 32:767-779
Roberts HH, Rouse LJ Jr, Walker ND, Hudson JH (1982)
Cold-water stress in Florida Bay and northern Bahamas - a
product of winter cold-air outbreaks. J Sediment Petrol
52:145-155
Roberts HH, Wilson PA, Lugo-Fernandez A (1992) Biologic
and geologic responses to physical processes: examples from
modern reef systems of the Caribbean-Atlantic region. Cont
Shelf Res 12:809-834
Sedimentology Seminar (1966) Cross-bedding in the Salem
Limestone of central Indiana. Sedimentology 6:95-114
Smith NP (1995) On long-term net fl ow over Great Bahama
Bank. J Phys Oceanogr 25:679-684
Society R (2005) Ocean acidifi cation due to increasing atmo-
spheric carbon dioxide. The Royal Society, London, pp 1-55,
Policy Document 12/05
Sumner DY, Grotzinger JP (1993) Numerical modeling of
ooid size and the problem of Neoproterozoic giant ooids.
J Sediment Petrol 63:974-982
Taft WH, Arrington F, Haimovitz A, MacDonald C,
Woolheater C (1968) Lithifi cation of modern marine car-
bonate sediments at Yellow Bank, Bahamas. Bull Mar Sci
18:762-828
Tucker ME, Wright VP (1996) Carbonate sedimentology.
Blackwell Science, Oxford
Van Veen J (1936) Onderzoekingen in de Hoofden in verband
met de gesteldheid previous termvannext term de Nederlandse
kust. (Measurements in the Straits of Dover, and their rela-
tion to the Netherlands coast). Algemeene Landsdrukkerij,
The Hague, 252 pp
Wanless HR, Tedesco LP (1993) Comparison of oolitic sand
bodies generated by tidal vs. wind-wave agitation. In:
Keith BD, Zuppan ZW (eds) Mississippian oolites and
modern analogs. Am Assoc Petrol Geol Stud Geol
35:199-225
Wanless HR, Burton EA, Dravis JJ (1981) Hydrodynamics of
carbonate fecal pellets. J Sediment Petrol 51:27-36
Wanless HR, Tedesco LP, Rossinsky V, Dravis JJ (1989)
Carbonate environments and sequences of Caicos Platform
with an introductory evaluation of South Florida. American
Geophysical Union, 28th international Geological congress
fi eld trip guidebook T374, 75 pp
Wood LJ (2004) Predicting tidal sand reservoir architecture
using data from modern and ancient depositional systems.
In: Grammer MG, Harris PM, Eberli GP (eds) Integration of
outdrop and modern analogs in reservoir modeling. Am
Assoc Petrol Geol Mem 80:45-66
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