Project Grant 2339296
- This $171,824 Project Grant from the National Science Foundation's Geosciences Program (CFDA 47.050) was awarded to the San Jose State University (SJSU) Research Foundation to characterize the geometry and activity of faults making up the San Andreas Fault system in the San Francisco Bay Area. The two-year project, entitled "EMBRACE-EAR-SEED: Transformative Research Experiences in Earthquake Science," will integrate geological field mapping, LiDAR data, and computer modeling to...
- This National Science Foundation (NSF) Project Grant under the Geosciences program (CFDA 47.050) provides $354,304 in funding to the University Enterprises Corporation at California State University, San Bernardino to host a new Research Experiences for Undergraduates (REU) site focused on designing sedimentation and tectonics research experiences to recruit junior-level university students and sophomore-level community college students into geoscience educational and career tracks. The REU site...
- This National Science Foundation (NSF) Geosciences Program (CFDA 47.050) Project Grant award of $189,438 to The University Corporation at California State University, Northridge will support a two-phase research effort to model the earthquake dynamics of complex thrust fault systems in the Western Transverse Ranges of California. In the first phase, undergraduate student researchers will conduct a series of simulations to determine physics-based rules governing when an earthquake rupture is...
- This three-year, $393,948 project grant from the National Science Foundation's Geosciences program (CFDA 47.050) will fund research to resolve conflicting tectonic models for the Laramide orogeny and flat-slab subduction in southern California. The grantee, the University Corporation at California State University, Northridge, will support field work and laboratory analyses in the San Gabriel Mountains to better understand the timing and driving forces behind mountain building in the western...
- This National Science Foundation (NSF) Geosciences Program (CFDA 47.050) project grant award of $130,499 provides funding for a collaborative research experience for undergraduate (REU) site hosted by California State University San Bernardino and the University of Cincinnati. The REU site aims to recruit junior-level university students and sophomore-level community college students into geoscience education and career tracks. Over the 3-year project period from September 1, 2025 to August...
- The National Science Foundation (NSF) has awarded a $397,841 Project Grant under the Geosciences program (CFDA 47.050) to The University Corporation at California State University, Northridge. The grant will fund a 2-year project to study the process of subduction termination along the central California continental margin. The project will use new offshore and onshore seismic data, along with geochemical analysis of surface volcanic rocks, to investigate the controversial "Isabella...
- The National Science Foundation awarded a $174,000 two-year Project Grant to researchers at the University of California, Berkeley under the Geosciences program (CFDA 47.050). The grant will support research into the spatiotemporal scales of transient slow slip on the San Andreas Fault near San Juan Bautista, Central California, and the implications for seismic hazard assessment in the region. Specifically, the funding will allow researchers to conduct fieldwork and analyses to better understand...
- This Project Grant award from the National Science Foundation's Geosciences Program (CFDA 47.050) provides $650,000 over a 3-year period to the University of Southern California to develop an AI model that can better understand fault dynamics and earthquake hazards in heavily faulted geologic basins. The project builds a multiphysics fault network model to discover reduced-order governing equations for the evolution of stress in complex fault systems, using the Southern Permian Basin in the...
- This $355,607 Project Grant award from the National Science Foundation (NSF) Division of Earth Sciences under the Geosciences program (CFDA 47.050) supports collaborative research to investigate an ancient example of flat-slab subduction in southern California and western Arizona. The goal is to collect data from rocks that were once located above the descending oceanic plate in order to improve simulations and understanding of similar modern tectonic settings, many of which pose significant...
- This National Science Foundation (NSF) Geosciences Program (CFDA 47.050) project grant award of $122,773 to the San Diego State University Research Foundation will support collaborative research to identify earthquake-related damage preserved in fault zones and use this information to better assess potential earthquake hazards along known fault lines. The research, which will run from June 2025 to May 2028, aims to develop criteria to distinguish earthquake-related damage from long-term fault...
CAREER: SHALLOW GEOPHYSICS OF FAULT CREEP: LINKING SLIP AND SURFACE DEFORMATION ON THE SAN ANDREAS FAULT -HOW ACTIVE FAULTS INTERSECT WITH THE EARTH?S SURFACE IS CRITICAL FOR IMPROVING UNDERSTANDING OF EARTHQUAKE HAZARDS, INCLUDING ANTICIPATING WHERE THE SURFACE WILL RUPTURE IN EARTHQUAKES, IMPROVING CONSTRUCTION PRACTICES NEAR FAULTS, AND FOR ACCURATE ESTIMATION OF FAULT SLIP RATES, WHICH IS A FUNDAMENTAL INPUT IN SEISMIC HAZARD MODELS, USED BY INSURANCE COMPANIES, GOVERNMENT OFFICIALS, LAND USE MANAGERS, AND PRIVATE COMPANIES AS WELL AS IN PUBLIC OUTREACH. HOWEVER, THE SHALLOWEST PORTION OF THE CRUST IS POORLY UNDERSTOOD WITH RESPECT TO TECTONIC DEFORMATION AND FAULTING. THIS CAREER PROJECT EVALUATES THE RELATIONSHIP BETWEEN TECTONIC FAULTING AND NEAR-SURFACE DEFORMATION BY INVESTIGATING THE CREEPING SEGMENT OF THE SAN ANDREAS FAULT IN CALIFORNIA. THE LEAD RESEARCHER AND TEAM WILL IMAGE SHALLOW FAULT STRUCTURE WITH GEOPHYSICAL TECHNIQUES COUPLED WITH SATELLITE OBSERVATIONS OF ACTIVE DEFORMATION. FIELD OBSERVATIONS WILL GUIDE COMPUTATIONAL MODELS TO EXPLORE LINKS BETWEEN CREEP AND SEISMIC FAULTING. THIS WORK WILL PROVIDE AN INCREASED NEAR-FIELD SPATIAL RESOLUTION OF FAULT BEHAVIOR. THE PROJECT LEVERAGES THE STRENGTHS OF CALIFORNIA STATE UNIVERSITY, NORTHRIDGE (CSUN), AS A MINORITY SERVING, PRIMARILY UNDERGRADUATE INSTITUTION, TO SUPPORT ROBUST TECTONICS AND GEOPHYSICS RESEARCH OPPORTUNITIES, AND APPLY RESEARCH SKILLS AND TOOLS TO BENEFIT UNDERSERVED LOCAL COMMUNITIES. IN ADDITION TO SUPPORTING STUDENT RESEARCH OPPORTUNITIES AT CSUN, THIS PROJECT INCLUDES A PILOT POSTDOCTORAL PROGRAM TO TRAIN A FUTURE PROFESSOR AT A TEACHING UNIVERSITY. AS PART OF STUDENT EQUIPMENT TRAINING, THE RESEARCH TEAM WILL CONDUCT GEOPHYSICAL SURVEYS AND OUTREACH IN MAGIC JOHNSON PARK IN WATTS, LOS ANGELES, IN PARTNERSHIP WITH THE BETTER WATTS INITIATIVE NONPROFIT ORGANIZATION. DUE TO THE COMPLEX AND SPATIALLY VARIABLE MECHANICAL NATURE OF THE NEAR-SURFACE, THE SHALLOWEST PORTION OF THE CRUST IS POORLY UNDERSTOOD WITH RESPECT TO TECTONIC DEFORMATION AND FAULTING. CHARACTERIZING HOW DEFORMATION INTERSECTS WITH THE SURFACE IS CRITICAL FOR UNDERSTANDING THE FUNDAMENTAL NATURE OF FAULTING AND ULTIMATELY FOR SEISMIC HAZARD. THIS PROJECT WILL EVALUATE THE RELATIONSHIP BETWEEN TECTONIC FAULTING AND NEAR-SURFACE DEFORMATION BY INTERROGATING SHALLOW GEOPHYSICS ALONG THE CREEPING SEGMENT OF THE SAN ANDREAS FAULT (SAF) IN CALIFORNIA (CA). THE RESEARCH TEAM WILL IMAGE NEAR-SURFACE FAULT STRUCTURE WITH GROUND PENETRATING RADAR (GPR) AND ELECTRICAL RESISTIVITY TOMOGRAPHY (ERT) AT 3 LOCATIONS ALONG THE FAULT, SPANNING DIFFERENT BEDROCK AND SURFACE LITHOLOGIES AND A RANGE OF FAULT BEHAVIOR FROM PARTIAL TO FULL CREEP. THE RESEARCHERS WILL COUPLE GPR AND ERT IMAGERY WITH OBSERVATIONS OF ACTIVE DEFORMATION FROM GNSS TO PROVIDE INCREASED NEAR-FIELD SPATIAL RESOLUTION OF DEFORMATION PARTITIONING IN A WAY THAT IS NOT POSSIBLE ON LOCKED OR DEEPER FAULT STRUCTURES. AS A CREEPING, RELATIVELY PLANAR, VERTICAL STRIKE SLIP FAULT, THE CENTRAL SAF REPRESENTS ONE OF THE SIMPLEST NATURAL FAULT LABORATORIES. CHARACTERIZING SAF CREEP IN THE NEAR-SURFACE ESTABLISHES FUNDAMENTAL BEHAVIOR WITH WHICH TO COMPARE MORE COMPLEX FAULTING, INCLUDING PARTIAL CREEP OR LOCKING ON MORE COMPLEX FAULT GEOMETRIES, AT GREATER (I.E., SEISMOGENIC) DEPTHS. TO GUIDE SUCH COMPARISONS, MECHANICAL MODELING WILL ESTABLISH POSSIBLE PARAMETERS CONTROLLING CREEP PARTITIONING THAT MAY ILLUMINATE LINKS BETWEEN CREEP AND SEISMIC FAULTING. THIS PROJECT IS SUPPORTED BY THE GEOPHYSICS PROGRAM AND EDUCATION AND HUMAN RESOURCES PROGRAM IN THE DIVISION OF EARTH SCIENCES. THIS AWARD REFLECTS NSF'S STATUTORY MISSION AND HAS BEEN DEEMED WORTHY OF SUPPORT THROUGH EVALUATION USING THE FOUNDATION'S INTELLECTUAL MERIT AND BROADER IMPACTS REVIEW CRITERIA.- SUBAWARDS ARE NOT PLANNED FOR THIS AWARD.
Mod # | Description | ReasonForModification | Federal Obligation | Date |
|---|---|---|---|---|
| Not listed | $179.2k | 7/8/25 | ||
| Not listed | $158.1k | 8/4/24 |