Shor, Alexander N. et al. (1983): Carbonate spikes and displaced components at Deep Sea Drilling Project Site 515; Pliocene/Pleistocene depositional processes in the southern Brazil Basin

Leg/Site/Hole:
DSDP 72
DSDP 72 515
Identifier:
1984-034769
georefid

10.2973/dsdp.proc.72.144.1983
doi

Creator:
Shor, Alexander N.
Lamont-Doherty Geol. Obs., Palisades, NY, United States
author

Jones, Glenn A.
Woods Hole Oceanogr. Inst., United States
author

Rasmussen, Kenneth A.
Tex. A&M Univ., Dep. Geophys., United States
author

Burckle, Lloyd H.
Bundesanst. Geowiss. Rohst., Federal Republic of Germany
author

Identification:
Carbonate spikes and displaced components at Deep Sea Drilling Project Site 515; Pliocene/Pleistocene depositional processes in the southern Brazil Basin
1983
In: Barker, Peter F., Johnson, David A., Carlson, Richard L., Cepek, Pavel, Coulbourn, William T., Gamboa, Luiz A., Hamilton, Norman, de Melo, Ubirajara, Pujol, Claude, Shor, Alexander N., Suzyumov, Alexey E., Tjalsma, Leonard R. C., Walton, William H., Whalen, Elizabeth (editor), Initial reports of the Deep Sea Drilling Project covering Leg 72 of the cruises of the drilling vessel Glomar Challenger, Santos, Brazil to Santos, Brazil, February-April, 1980
Texas A & M University, Ocean Drilling Program, College Station, TX, United States
72
885-893
English
Coverage:Geographic coordinates:
North:-26.1400
West:-36.3000East: -36.3000
South:-26.1400

Quaternary geology; algae; Antarctic bottom water; Atlantic Ocean; Brazil Basin; carbonate sediments; Cenozoic; clastic sediments; clay; currents; Deep Sea Drilling Project; diatoms; Discoasteridae; DSDP Site 515; IPOD; Leg 72; lower Pleistocene; marine sediments; microfossils; nannofossils; Neogene; North Atlantic; paleo-oceanography; paleocirculation; paleoclimatology; paleocurrents; Plantae; Pleistocene; Pliocene; Quaternary; Rio Grande Rise; sedimentary structures; sedimentation; sediments; silt; South American Atlantic; South Atlantic; southwestern Atlantic; stratigraphy; Tertiary; thallophytes; transport; turbidite; turbidity current structures; turbidity currents; upper Pliocene; Vema Channel; Vema fracture zone;

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