Delineating a shallow fault zone and dipping bedrock strata using multichannal analysis of surface waves with a land streamer

Author:

Ivanov Julian123,Miller Richard D.123,Lacombe Pierre123,Johnson Carole D.123,Lane John W.123

Affiliation:

1. The University of Kansas, Kansas Geological Survey, 1930 Constant Avenue, Lawrence, Kansas 66047.

2. U. S. Geological Survey, Toxic Substances Hydrology Program, 810 Bear Tavern Road, Suit 206, West Trenton, New Jersey 08628.

3. U. S. Geological Survey, OGW, Branch of Geophysics, 11 Sherman Place, Unit 5015, Storrs, Connecticut 06269.

Abstract

The multichannel analysis of surface waves (MASW) seismic method was used to delineate a fault zone and gently dipping sedimentary bedrock at a site overlain by several meters of regolith. Seismic data were collected rapidly and inexpensively using a towed 30-channel land streamer and a rubberband-accelerated weight-drop seismic source. Data processed using the MASW method imaged the subsurface to a depth of about [Formula: see text] and allowed detection of the overburden, gross bedding features, and fault zone. The fault zone was characterized by a lower shear-wave velocity [Formula: see text] than the competent bedrock, consistent with a large-scale fault, secondary fractures, and in-situ weathering. The MASW 2D [Formula: see text] section was further interpreted to identify dipping beds consistent with local geologic mapping. Mapping of shallow-fault zones and dipping sedimentary rock substantially extends the applications of the MASW method.

Publisher

Society of Exploration Geophysicists

Subject

Geochemistry and Petrology,Geophysics

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