Project Grant 2317729
- This Project Grant award from the National Science Foundation's Geosciences Program (CFDA 47.050) provides $171,096 to support a collaborative research initiative focused on designing an integrated array of instrumentation to observe subduction zone geohazards in Chile. The goal is to develop a framework for integrated studies that can address the linkages between earthquake, volcanic, tsunami, and landslide hazards in this active subduction zone region. The project will involve teams of experts...
- This $158,481 federal Project Grant award from the National Science Foundation's Geosciences Program (CFDA 47.050) will support collaborative research by Lehigh University to investigate the relationship between changes in glaciers, topography, and the behavior of active volcanoes in Chile over the past 50,000 years. The research aims to generate high-resolution records of volcanic activity, ice retreat, and landscape evolution, and use this data to explore how crustal loading changes driven...
- The National Science Foundation awarded a $274,166 Project Grant to Columbia University under the Geosciences program (CFDA 47.050) to conduct collaborative research on the linkages between glacio-climatic, hydrothermal, and volcanic processes in the central Andes from May 1, 2022 to April 30, 2025. Specifically, the research aims to establish spatial and temporal relationships between glacier fluctuations including deglaciation and the onset of hydrothermal and/or volcanic activity through...
- This National Science Foundation (NSF) Geosciences Program (CFDA 47.050) Project Grant award of $296,096 to Brown University provides funding to investigate the crust and uppermost mantle beneath active volcanoes using new seismic analysis techniques. The 2-year project, starting on Sep 1, 2024, aims to advance understanding of how magma storage and migration affect the eruptibility of volcanoes in regions like Yellowstone, the Cascades Arc, and the Altiplano-Puna Volcanic Complex. Key...
- This Project Grant award from the National Science Foundation's Geosciences Program (CFDA 47.050) provides $335,953 to Purdue University to conduct collaborative research comparing the geochemical and temporal links between volcanism and plutonism in an ancient subduction zone volcano in Washington. The key products of this 3-year project include: Reconstruction of the record of volcanic eruptions and subvolcanic intrusive activity by studying the geochemistry, geochronology, and petrology of...
- This $490,303 Project Grant award from the National Science Foundation's (NSF) Geosciences Program (CFDA 47.050) will support a research project aimed at improving the understanding of lava flow properties and their impact on volcanic eruption hazard assessment. The key products and services to be delivered under this award include: Developing and deploying two new field tools to directly measure the viscosity of natural lava flows, which contain critical elements like bubbles and crystals...
- This $118,260 Project Grant award from the National Science Foundation's Geosciences Program (CFDA 47.050) supports a collaborative research project to investigate the effects of lithospheric foundering on mountain building processes in the Southern Puna Plateau of Argentina. The key products and services to be delivered include: Generating new geological datasets and numerical modeling results to test hypotheses about modes of lithosphere removal and their impact on the geologic record in the...
- This $375,631 federal Project Grant award from the National Science Foundation's Geosciences Program (CFDA 47.050) supports collaborative research to investigate the effects of lithospheric foundering, or the detachment and sinking of the lower crust and mantle lithosphere, on the formation of large mountain belts and high plateaus. The research focuses on the Southern Puna Plateau in northwest Argentina, where multiple potential lithosphere removal events have been hypothesized based on...
- This National Science Foundation (NSF) Division of Earth Sciences Project Grant award for $180,000 from April 1, 2024 to March 31, 2026 will support research to develop a new "Eruption Stability Diagram" classification system for volcanic eruptions. The objective is to better understand and predict the evolution of volcanic hazards, such as ash clouds and pyroclastic density currents, by accounting for the effects of varying eruption rates and micrometer-scale processes. The research...
- This collaborative research project, funded by the National Science Foundation's Division of Earth Sciences under the Geosciences program (CFDA 47.050), examines the timing and episodicity of magmatic intrusions within the San Rafael Volcanic Field in Utah. Awarded to the University of Wisconsin-Milwaukee on June 15, 2025, with $321,404 obligated through May 31, 2028, the project delivers high-precision geochronological and paleomagnetic data through 40Ar/39Ar dating, paleomagnetic analysis,...
COLLABORATIVE RESEARCH: THE INTERPLAY OF SURFACE EVOLUTION, SHALLOW MAGMATISM, A LARGE HYDROTHERMAL SYSTEM, AND HAZARDS AT PUYEHUE-CORDON CAULLE VOLCANIC COMPLEX, CHILE -VOLCANIC LANDSCAPES POSE A VARIETY OF NATURAL HAZARDS TO LOCAL AND REGIONAL COMMUNITIES, INCLUDING VOLCANIC EXPLOSIONS AND OUTPOURING OF LAVA, LARGE-SCALE LAND SLIDING OF RESULTING STEEP TERRAINS, AND THE FORMATION OF SHALLOW HYDROTHERMAL SYSTEMS. THE HYDROTHERMAL SYSTEMS AFFECT WATER QUALITY AND WEAKEN THE OVERLYING ROCKS FURTHER INCREASING THE LIKELIHOOD OF MAJOR LANDSLIDES. LARGER VOLCANIC ERUPTIONS MAY IMPACT AIR TRAFFIC AND THEREFORE DISRUPT THE GLOBAL ECONOMY. SEVERAL OF THESE GEOHAZARDS OCCURRED DURING THE LARGE 2011-12 ERUPTION OF CORD?N CAULLE, CHILE, WITH ITS VOLCANIC ASH PLUME REACHING LARGE PARTS OF SOUTH AMERICA INCLUDING BUENOS AIRES. THE NATURAL HAZARDS CONTINUE TO POSE A MAJOR RISK FOR THE REGION, BECAUSE THE ERUPTION WAS ACCOMPANIED BY A SHALLOW INTRUSION OF MAGMA THAT HAS ESTABLISHED A VIGOROUS HYDROTHERMAL SYSTEM WITHIN A STEEP EDIFICE SCARRED BY NUMEROUS LARGE SURFACE CRACKS, INDICATIVE OF SLOPE INSTABILITY. THIS ERUPTION SEQUENCE, THE NEAR-SURFACE INTRUSION, AND ITS SURROUNDINGS PRESENT A UNIQUE OPPORTUNITY TO ADVANCE OUR UNDERSTANDING OF THE GENESIS AND CURRENT STATE OF THIS RECENTLY FORMED INTRUSION, WHICH SERVES AS A MODEL FOR NEAR-SURFACE MAGMATIC INTRUSIONS GLOBALLY. THE GOAL OF THIS PROJECT IS ABILITY TO EVALUATE AND UNDERSTAND THE NATURAL HAZARDS ASSOCIATED WITH INTRUSIONS, IN PARTICULAR THOSE ARISING FROM THE INTERACTIONS BETWEEN SURFACE PROCESSES, HYDROTHERMAL, AND MAGMATIC PROCESSES. FURTHERMORE, THE PROPOSED WORK AIMS TO ADVANCE OUR UNDERSTANDING OF HOW VOLCANIC ERUPTIONS TRANSITION FROM EXPLOSIVE TO EFFUSIVE BEHAVIOR AND THESE TRANSITIONS MAY LEAD TO THE FORMATION OF SHALLOW INTRUSIONS. IN ADDITION TO BUILDING A STRONG US-CHILEAN COLLABORATIVE EFFORT WITH THIS PROJECT, THE TEAM WILL FACILITATE A LARGE COMMUNITY-RESEARCH COMPONENT, WHERE STUDENTS WILL BE INVITED TO PARTICIPATE IN FIELD AND OTHER RESEARCH ACTIVITIES. SUBDUCTION ZONES CREATE VOLCANIC ARCS THAT ARE DYNAMIC ENVIRONMENTS OF STEEP TERRAIN BUILT AND MODIFIED BY THE INTERPLAY BETWEEN VOLCANIC, PLUTONIC, AND LANDSCAPE PROCESSES. WATER ACTS AS THE KEY AGENT FOR DYNAMICAL INTERACTIONS, IN THE FORM OF THE HYDROTHERMAL SYSTEM THAT EXISTS IN THE SHALLOW SUBSURFACE AND IN THE FORM OF EROSIONAL PROCESSES. UNDERSTANDING OF HOW THE MAGMATIC-HYDROTHERMAL SPHERE AND SURFACE- AND HYDROSPHERE INTERACT WHEN VOLCANIC ACTIVITY FUNDAMENTALLY ALTERS THE LANDSCAPE ON DECADAL TIME SCALES REMAINS A MAJOR CHALLENGE. THE PROPOSED PROJECT IS CENTERED AROUND THE 2011-12 C?RDON CAULLE LACCOLITH, ONE OF THE MOST DYNAMIC LANDSCAPES ON EARTH. IT IS UNIQUE BECAUSE OF THE INTERSECTION OF AN ACTIVE PLUTONIC AND VOLCANIC REALM WITH THE SHALLOW SUBSURFACE AND SURFACE. IT AFFORDS THE OPPORTUNITY TO STUDY ONGOING PROCESSES THAT ACT AT THE INTERSECTION OF MAGMA PATHWAYS TO THE SURFACE, SHALLOW MAGMA INTRUSION, HYDROSPHERE, AND SURFACE. THE FOCUS WILL BE ON ENHANCING KNOWLEDGE ABOUT LACCOLITH INITIATION AND DEVELOPMENT THROUGH THE INTEGRATION OF EXISTING AND NEWLY PROPOSED OBSERVATIONS WITH GEOPHYSICAL AND GEOCHEMICAL MODELS, IN ORDER TO ASCERTAIN THE CURRENT STATE OF THE SYSTEM AND PROJECT ITS FUTURE EVOLUTION. THE PROJECT COMBINES METHODS OF VOLCANOLOGY, GEOPHYSICS, AQUEOUS GEOCHEMISTRY, AND GEOMORPHOLOGY. IT WILL ADD NEW INSIGHT INTO THE INTERNAL AND EXTERNAL PROCESSES THAT BUILD AND MODIFY NEAR-SURFACE INTRUSIONS. IT AIMS TO ANSWER WHY BUOYANT MAGMA, DESPITE HAVING ALREADY AN OPEN PATH TO THE SURFACE, INTRUDED LATERALLY WITHIN HUNDREDS OF METERS OF THE SURFACE. BEYOND EXPLORATION OF LACCOLITH GENESIS, THE PROJECT SEEKS TO PROVIDE A BASIS FOR ASSESSING ITS CURRENT STATE AND FUTURE EVOLUTION THROUGH THE INTEGRATION OF A WIDE RANGE OF EXISTING AND NEWLY PROPOSED OBSERVATIONS OF STRUCTURE, MASS AND HEAT FLUX IN AND OUT OF THE INTRUSION, AND ITS SURFACE EVOLUTION AS MODULATED BY THE INTERIOR AND EXTERIOR PROCESSES. THE PROJECT WILL FOSTER INTERNATIONAL COLLABORATIONS THAT STRENGTHEN SCIENTIFIC RELATIONSHIPS BETWEEN THE US AND CHILE. THE PROJECT WILL HAVE AN OPEN STRUCTURE THAT ACTIVELY BROADENS THE SCIENCE COMMUNITY WORKING ON THIS VOLCANIC SYSTEM VIA A FIELD SCHOOL COMPONENT. AN OUTREACH COMPONENT WILL INVOLVE RURAL MIDDLE SCHOOLS THAT ARE DIRECTLY AFFECTED BY REGIONAL VOLCANISM. THIS PROJECT IS JOINTLY FUNDED BY FRONTIER RESEARCH IN EARTH SCIENCES (FRES) AND THE ESTABLISHED PROGRAM TO STIMULATE COMPETITIVE RESEARCH (EPSCOR). 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 | $454.8k | 8/27/25 | ||
| Not listed | $165.9k | 7/9/25 | ||
| Not listed | $190.5k | 9/7/23 |