Seismologist

Fervo Energy

$100K — $120K *
Energy & Utilities
Less than 5 years of experience
Job Overview by Ladders

Qualifications

  • Ph.D. in Geophysics, Seismology, Applied Mathematics, or related field; no experience required for recent graduates.
  • Proficiency with HypoDD and GrowClust for seismic data analysis and relocation.
  • Knowledge of seismic monitoring principles including network geometry and instrument calibration.
  • Experience with earthquake source analysis techniques and statistics.
  • Understanding of induced seismicity and seismic hazard metrics.
  • Python programming skills for seismic data processing and handling large datasets.
  • Ability to produce and defend earthquake catalogs for research and regulation.

Responsibilities

  • Design, deploy, and maintain surface and borehole seismic monitoring networks.
  • Set geometry and instrumentation for accurate detection and location.
  • Calibrate sensors and ensure continuous data quality control.
  • Run automated seismic detection and event association.
  • Build and maintain velocity models and correct for station biases.
  • Manage field work, vendor collaborations, and data standards.
  • Incorporate Distributed Acoustic Sensing data with conventional networks for improved analysis.

Benefits

  • Opportunity to work on innovative projects in the geothermal energy sector.
  • Access to advanced seismic monitoring technology and methods.
  • Collaborative work environment with a focus on professional development.
  • Potential travel to field sites for hands-on experience and troubleshooting.
Full Job Description
Job Type

Full-time

Description

Fervo is seeking a Seismologist to lead the design, deployment, and processing of surface and borehole seismic monitoring networks across our EGS development portfolio. You will own our arrays of three-component geophones and broadband seismometers - sited at the surface, in shallow vaults and boreholes, and downhole in monitoring wells - from network geometry and instrumentation through calibration, data quality, and continuous processing.

The central deliverable of this role is a high-precision, defensible earthquake catalog. Proficiency with HypoDD and GrowClust is required, and you will build, relocate, quality-control, and defend the catalogs that feed fracture-network characterization, reservoir models, induced-seismicity mitigation protocols, and regulatory and community engagement.

Fervo also operates fiber-optic Distributed Acoustic Sensing (DAS) in a number of wells, and you will incorporate DAS alongside the conventional sensor network as a complementary observing system. Familiarity with DAS is valuable, but it is not the focus of the role and is not required at hire - the conventional network and the relocated catalog come first.

Requirements

Responsibilities

Surface and Borehole Geophone & Seismometer Networks
  • Design, deploy, and maintain surface and borehole geophone and seismometer networks.
  • Set network geometry and instrumentation to meet detection, location-accuracy, and completeness targets.
  • Own instrument response, sensor orientation and calibration, timing, and continuous data QC.
  • Run automated detection, phase picking, and event association across the network.
  • Build and maintain 1D and 3D velocity models and station corrections.
  • Manage field campaigns, vendor scopes, and data-delivery standards.

Earthquake Location, Relocation, and Catalog Development
  • Run HypoDD for double-difference relocation.
  • Run GrowClust for relative relocation and hierarchical clustering.
  • Generate waveform cross-correlation differential travel times and maintain automated relocation pipelines.
  • Determine source parameters - magnitude, focal mechanism, moment tensor, and stress drop.
  • Interpret relocated seismicity as fracture geometry, stimulated volume, and fault reactivation.
  • Maintain a versioned production catalog with documented magnitudes, completeness, and uncertainty.

Distributed Acoustic Sensing (DAS) - complementary observing system
  • Incorporate DAS data from instrumented wells alongside the conventional network.
  • Perform joint DAS and sensor processing where it improves the catalog.
  • Interpret DAS response in a borehole setting, including its resolution limits.

Induced Seismicity, Hazard, and Risk
  • Track b-value and magnitude of completeness, and forecast seismicity rates and maximum magnitude.
  • Develop real-time hazard algorithms using physics-based, statistical, and machine-learning methods.
  • Maintain traffic light protocols and mitigation strategies with operations.
  • Link observed seismicity to Thermo-Hydro-Mechanical-Chemical reservoir models.
  • Represent Fervo with regulators, partners, and communities on induced-seismicity questions.

Qualifications

Required
  • Ph.D. in Geophysics, Seismology, Applied Mathematics, or a closely related field. No minimum years of industry or post-doctoral experience are required - recent and upcoming graduates are encouraged to apply.
  • Working proficiency with HypoDD and GrowClust, including generation of waveform cross-correlation differential travel times, parameter selection, and assessment of relocation uncertainty. This may have been developed through thesis work, post-doctoral research, or industry practice.
  • Solid grounding in surface and borehole seismic monitoring - network geometry and detectability, instrument response, sensor orientation and calibration, and earthquake detection, picking, and location.
  • Knowledge of earthquake source analysis, including moment tensor inversion, focal mechanism determination, magnitude estimation, and stress drop estimation.
  • Understanding of induced seismicity and seismic hazard concepts - magnitude of completeness, b-value, Gutenberg-Richter statistics, and ground-motion estimation.
  • Python proficiency for seismic data processing (ObsPy, NumPy/SciPy, pandas, or equivalent tooling) and comfort working in Linux environments with shell scripting and version control.
  • Ability to build velocity models and to produce, quality-control, and defend earthquake catalogs that others rely on.
  • Willingness to travel to field sites for network deployment, commissioning, and troubleshooting up to 20%.

Preferred
  • High Performance Computing and large-scale distributed processing of continuous seismic data.
  • Machine learning applied to seismological problems, including deep-learning phase pickers.

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