DEEP-STRUCTURE OF THE UNITED-STATES ATLANTIC CONTINENTAL-MARGIN, OFFSHORE SOUTH-CAROLINA, FROM COINCIDENT OCEAN-BOTTOM AND MULTICHANNEL SEISMIC DATA

被引:105
作者
HOLBROOK, WS
REITER, EC
PURDY, GM
SAWYER, D
STOFFA, PL
AUSTIN, JA
OH, J
MAKRIS, J
机构
[1] UNIV HAMBURG, INST GEOPHYS, W-2000 HAMBURG 13, GERMANY
[2] RICE UNIV, DEPT GEOL & GEOPHYS, HOUSTON, TX 77251 USA
[3] MIT, EARTH RESOURCES LAB, CAMBRIDGE, MA 02139 USA
关键词
D O I
10.1029/93JB01821
中图分类号
P3 [地球物理学]; P59 [地球化学];
学科分类号
0708 ; 070902 ;
摘要
We present the results of a combined multichannel seismic reflection (MCS) and wide-angle, ocean bottom seismic profile collected in 1988 across the Carolina Trough on the U.S. Atlantic continental margin. Inversion of vertical-incidence and wide-angle travel time data has produced a velocity model of the entire crust across the continent-ocean transition. The margin consists of three structural elements: (1) rifted continental crust, comprising 1-4 km of post-rift sedimentary rocks overlying a 30 -34 km thick subsedimentary crust, (2) transitional crust, a 70- to 80-km-wide zone comprising up to 12 km of postrift sedimentary rocks overlying a 10- to 24-km-thick subsedimentary crust, and (3) oceanic crust, comprising 8 km of sedimentary rocks overlying an 8-km-thick crystalline crust. The boundary between rifted continental and transitional crust, marked by the Brunswick magnetic anomaly, represents an abrupt change in physical properties, with strong lateral increases in seismic velocity, density, and magnetic susceptibility. The transitional crust contains mid-crustal seaward-dipping reflections observed on the MCS section and has seismic velocities of 6.5-6.9 km/s in the midcrust and 7.2-7.5 km/s in the lower crust. Modeling of potential field data shows that transitional crust also produces the prominent, margin-parallel gravity anomaly and the Brunswick and East Coast magnetic anomalies. These observations support the interpretation that the transitional crust was formed by magmatism during continental breakup. The prodigious thickness (up to 24 km) of igneous material rivals that interpreted on continental margins of the North Atlantic (e.g., Hatton Bank and Voring Plateau), which formed in the vicinity of the Iceland hotspot. These observations, when combined with other transects across the margin, confirm previous suggestions that the U.S. Atlantic margin is strongly volcanic and further imply that the magmatism was not the result of a long-lived mantle plume.
引用
收藏
页码:9155 / 9178
页数:24
相关论文
共 91 条
[1]   THE EAST COAST MAGNETIC ANOMALY [J].
ALSOP, LE ;
TALWANI, M .
SCIENCE, 1984, 226 (4679) :1189-1191
[2]  
ANDERSON DL, 1992, GEOL SOC LOND SPEC P, V68, P99
[3]  
AUSTIN JA, 1990, GEOLOGY, V18, P1023, DOI 10.1130/0091-7613(1990)018<1023:CSOTSG>2.3.CO
[4]  
2
[5]   THE VELOCITY OF COMPRESSIONAL WAVES IN ROCKS TO 10-KILOBARS .1. [J].
BIRCH, F .
JOURNAL OF GEOPHYSICAL RESEARCH, 1960, 65 (04) :1083-1102
[6]   NOT SO HOT HOT-SPOTS IN THE OCEANIC MANTLE [J].
BONATTI, E .
SCIENCE, 1990, 250 (4977) :107-111
[7]   CRUSTAL STRUCTURE OF THE COLUMBIA PLATEAU - EVIDENCE FOR CONTINENTAL RIFTING [J].
CATCHINGS, RD ;
MOONEY, WD .
JOURNAL OF GEOPHYSICAL RESEARCH-SOLID EARTH AND PLANETS, 1988, 93 (B1) :459-474
[8]   WAVE FIELD PROCESSING OF DATA FROM THE 1986 PROGRAM FOR ARRAY SEISMIC STUDIES OF THE CONTINENTAL LITHOSPHERE OUACHITA EXPERIMENT [J].
CHANG, WF ;
MCMECHAN, GA .
JOURNAL OF GEOPHYSICAL RESEARCH-SOLID EARTH AND PLANETS, 1989, 94 (B12) :17781-17792
[9]   COMPRESSIONAL AND SHEAR WAVE VELOCITIES AT PRESSURES TO 10 KILOBARS FOR BASALTS FROM EAST PACIFIC RISE [J].
CHRISTENSEN, NI .
GEOPHYSICAL JOURNAL OF THE ROYAL ASTRONOMICAL SOCIETY, 1972, 28 (05) :425-+
[10]  
Claerbout J.F., 1985, IMAGING EARTHS INTER