Migration and tomographic imaging of colluvial wedges and faults over the Washington Fault, Arizona

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Publication Type thesis
School or College College of Mines & Earth Sciences
Department Geology & Geophysics
Author Liu, Shengdong
Title Migration and tomographic imaging of colluvial wedges and faults over the Washington Fault, Arizona
Date 2015-12
Description Two-dimensional (2-D) and three-dimensional (3-D) seismic surveys are conducted across the Washington fault zone of northern Arizona, with the purpose of imaging the fault-related structures to a depth of 30 m by 3-D traveltime tomography and 2-D poststack migration. The scientific objective is to use the seismic methods instead of a trenching log to deduce the paleoseismic characters of this fault zone, and to guide paleoseismologists in the optimal placement of a future trenching survey. The first-arrival traveltimes of the data are picked and inverted for the P-wave velocity distribution. Tomographic results delineate two large low-velocity zones (LVZ), which are interpreted as two colluvial wedge packages. To detect the fault structures, which have more observable reflection energy than the 3-D data, the 2-D seismic data are migrated. Four faults are recovered in the migration image, including the main fault, and possible antithetic fault. The fault location is identical to that in the tomogram and raypath density image. The main fault in the tomogram is also consistent with the results from the geomorphology survey. These results demonstrate that seismic imaging methods (3-D traveltime tomography and 2-D reflection imaging) can delineate the shape and depth of LVZs associated with colluvial wedges. Although these LVZ images cannot unambiguously delineate different rupture events in a colluvial package, they can be used to optimally design a follow-on trenching survey. Combining the paleoseismic data with the fault slip inferred by tomography, the age of the fault is speculatively estimated to be younger than 16 kyr. Future work should compare my interpreted tomogram with the trench log soon to be excavated by personnel of the Utah Geological Survey (UGS), and analyze the validity of my geological interpretation. This trench was designed using the results of this survey, which is partial justification for seismic surveys over normal fault scarps.
Type Text
Publisher University of Utah
Subject Colluvial wedges; Migration; Tomographic imaging; Washington fault
Dissertation Institution University of Utah
Dissertation Name Master of Science
Language eng
Rights Management © Shengdong Liu
Format Medium application/pdf
Format Extent 27,555 bytes
Identifier etd3/id/4014
ARK ark:/87278/s6fv1vct
Setname ir_etd
ID 197564
Reference URL https://collections.lib.utah.edu/ark:/87278/s6fv1vct
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