Related Experiment Video
Updated: Dec 18, 2025

Kinematic History of a Salient-recess Junction Explored through a Combined Approach of Field Data and Analog Sandbox Modeling
Published on: August 5, 2016
3D fault architecture controls the dynamism of earthquake swarms
Zachary E Ross1, Elizabeth S Cochran2, Daniel T Trugman3,4
1Seismological Laboratory, California Institute of Technology, Pasadena, CA, USA. zross@caltech.edu.
Abstract:
The vibrant evolutionary patterns made by earthquake swarms are incompatible with standard, effectively two-dimensional (2D) models for general fault architecture. We leverage advances in earthquake monitoring with a deep-learning algorithm to image a fault zone hosting a 4-year-long swarm in southern California. We infer that fluids are naturally injected into the fault zone from below and diffuse through strike-parallel channels while triggering earthquakes. A permeability barrier initially limits up-dip swarm migration but ultimately is circumvented. This enables fluid migration within a shallower section of the fault with fundamentally different mechanical properties. Our observations provide high-resolution constraints on the processes by which swarms initiate, grow, and arrest. These findings illustrate how swarm evolution is strongly controlled by 3D variations in fault architecture.
More Related Videos
Related Concept Videos
Fault Types
For line-to-line faults occurring between phases B and C, the...
Three-Dimensional Force System
Three-Dimensional Force System:Problem Solving
To solve a three-dimensional force system, first resolve each force into its respective scalar components. Do this using...
Elastic Collisions: Case Study
Elastic Collisions: Introduction
Two-Dimensional Force System

