Skip to main content
U.S. flag

An official website of the United States government

Geologic and structural controls on rupture zone fabric: A field-based study of the 2010 Mw 7.2 El Mayor–Cucapah earthquake surface rupture

May 1, 2015

We systematically mapped (scales >1:500) the surface rupture of the 4 April 2010 Mw (moment magnitude) 7.2 El Mayor-Cucapah earthquake through the Sierra Cucapah (Baja California, northwestern Mexico) to understand how faults with similar structural and lithologic characteristics control rupture zone fabric, which is here defined by the thickness, distribution, and internal configuration of shearing in a rupture zone. Fault zone thickness and master fault dip are strongly correlated with many parameters of rupture zone fabric. Wider fault zones produce progressively wider rupture zones and both of these parameters increase systematically with decreasing dip of master faults, which varies from 20° to 90° in our dataset. Principal scarps that accommodate more than 90% of the total coseismic slip in a given transect are only observed in fault sections with narrow rupture zones (

Publication Year 2015
Title Geologic and structural controls on rupture zone fabric: A field-based study of the 2010 Mw 7.2 El Mayor–Cucapah earthquake surface rupture
DOI 10.1130/GES01078.1
Authors Orlando Teran, John L. Fletcher, Michael Oskin, Thomas Rockwell, Kenneth W. Hudnut, Ronald Spelz, Sinan Akciz, Ana Paula Hernandez-Flores, Alexander Morelan
Publication Type Article
Publication Subtype Journal Article
Series Title Geosphere
Index ID 70175913
Record Source USGS Publications Warehouse
USGS Organization Earthquake Science Center
Was this page helpful?