HR: 0830h
AN: S21F-0400 [PDF]
TI: Rifting processes in the centre of Siberia revealed by BEST (Baikal Explosion Seismic
Transects)
AU: Nielsen, C A
EM: NC220776@geol.ku.dk
AF: Geological Institute, University of Copenhagen, Oster Voldgade 10, Copenhagen, DK-1350
Denmark
AU: * Thybo, H
EM: thybo@geol.ku.dk
AF: Geological Institute, University of Copenhagen, Oster Voldgade 10, Copenhagen, DK-1350
Denmark
AU: Jensen, M M
EM: MJ061076@geol.ku.dk
AF: Geological Institute, University of Copenhagen, Oster Voldgade 10, Copenhagen, DK-1350
Denmark
AU: Ross, A
AF: Geological Institute, University of Copenhagen, Oster Voldgade 10, Copenhagen, DK-1350
Denmark
AU: Suvorov, V D
AF: Institute of Geophysics, Russian Academy of Sciences-Siberian Branch (RAS-SB), Prospect Koptuga 3,
Novosibirsk, 630090
Russian Federation
AU: Emanov, A
AF: Geophysical Survey (RAS-SB), Prospect Koptuga 3, Novosibirsk, 630090
Russian Federation
AU: Seleznev, V
AF: Geophysical Survey (RAS-SB), Prospect Koptuga 3, Novosibirsk, 630090
Russian Federation
AU: Tatkov, G
AF: Geological Survey of the Buryat Province, Sakhyanova Str 6A, Ulan Ude, 670047
Russian Federation
AU: Perchuc, E
AF: Geophysical Institute, Polish Academy of Sciences, Ks. Janusza 64, Warsaw, PL-01452
Poland
AU: Gazcynski, E
AF: Geophysical Institute, Polish Academy of Sciences, Ks. Janusza 64, Warsaw, PL-01452
Poland
AB:
The Baikal Rift Zone is located in Siberia at the centre of the world's largest continental area. It offers a unique
opportunity for studying the processes of intra-cratonic rifting. The BEST project (Baikal Explosion Seismic Transects)
comprises two deep seismic profiles at the southern end of Lake Baikal. The field project was carried out in October 2002
after a pilot project in September 2001. The aim of the project is to determine the crustal and upper mantle seismic velocity
structure. The two profiles are: (1) a 360 km long, NS-trending profile across the rift zone from the Mongolian border to
Cheremhovo, and (2) a 360 km long EW-trending profile along-strike of the rift zone at the northern shore of the lake into
the Tunka depression to the Mongolian border. 180 Texan one-component seismographs were deployed along each profile. The
primary seismic sources were 13 explosions in boreholes, each with a 500 to 3000 kg charge. Supplementary sources were airgun
shots in the lake (one 100 l airgun on profile 1, one 30 l airgun on profile 2) and the supervibrator located at Babushkin
near the cross point between the two profiles at the shore of the lake. We present the preliminary modelling results of the
BEST data from tomographic inversion of first arrival times and 2D ray tracing modelling of the seismic velocity structure of
the crust and uppermost mantle. The models show: (1) A pronounced sedimentary graben structure to depths of at least 10 km;
(2) No significant crustal thinning below the rift zone; (3) Strong seismic reflectivity underneath the rift zone, indicative
of pronounced magmatic intrusion into the lower crust, despite the non-volcanic appearance of much of the rift zone; (4) No
sign of significant reduction of the seismic Pn wave velocity; and (5) No clear indication of continuation of the cratonic
crust underneath the rift zone in disagreement with a recently published model of the rifting process. Instead the model is
in agreement with a model in which the rift zone developed in the suture between the Siberian Craton and the Palaeozoic fold
belt to the SE of Lake Baikal.
DE: 7200 SEISMOLOGY
DE: 7205 Continental crust (1242)
DE: 7218 Lithosphere and upper mantle
DE: 8109 Continental tectonics--extensional (0905)
SC: Seismology [S]
MN: 2003 Fall Meeting