DescriptionAbout Us
Eden is pioneering sustainable natural resource recovery by using electricity to enhance subsurface permeability. Our Electrical Reservoir Stimulation technology offers a precise water-efficient alternative to traditional hydraulic fracturing reducing environmental risks while maximizing resource extraction.
Backed by leading public and private institutions we have raised $24M including $14M in dilutive capital from industry leaders such as Anglo American and Helmerich & Payne along with climate-focused investors like the Grantham Foundation. Additionally we have secured $10M in non-dilutive funding primarily through four DOE ARPA-E grants that support our R&D in frontier industries.
Headquartered in Somerville MA and with an office in Houston TX Edens team of 16 experts specializes in geophysics geochemistry high-voltage engineering and subsurface tool design. We are actively demonstrating our next-generation permeability enhancement technology across diverse geologies worldwide collaborating with industry leaders in geothermal energy geologic hydrogen carbon storage and mining to redefine resource recovery for a carbon-neutral future.
Looking ahead we are preparing for surface and subsurface field tests in cooperation with our supportive technical partners.
Your Impact
- Develop and refine 3D reservoir models in Petrel from geologic interpretations incorporating gridding upscaling and facies modeling to capture heterogeneity and optimize simulation accuracy.
- Distribute petrophysical properties and integrate natural and induced fractures using DFN dual-porosity and Embedded Discrete Fracture Models to achieve realistic subsurface representations.
- Design and execute hydraulic fracture simulations in Kinetics calibrating permeability connectivity and fracture geometry for high-fidelity results.
- Configure and run full-field thermal recovery simulations in Intersect to evaluate Enhanced Geothermal System (EGS) performance including cold-water injection and heat extraction modeling.
- Simulate thermal-hydraulic-mechanical-chemical (THMC) coupling to assess long-term reservoir behavior fracture evolution and energy recovery sustainability.
- Partner with geologists geomechanical engineers and field teams to integrate multi-disciplinary data validate models and optimize stimulation strategies.
- Identify and quantify key reservoir uncertainties through sensitivity analysis guiding field development and design decisions.
- Contribute to next-generation geothermal reservoir modeling frameworks to enhance recovery efficiency and accelerate EGS commercialization.
RequirementsAbout You
- Masters or PhD (or equivalent expertise) in Petroleum Reservoir or Geothermal Engineering or a closely related subsurface discipline.
- 3 years of experience building and running 3D reservoir models and full-field simulations ideally within geothermal or unconventional systems.
- Strong command of Petrel Kinetics and Intersect for model construction upscaling fracture integration and thermal recovery simulation.
- Proficient in fracture modeling and geomechanics including stress analysis fracture propagation and permeability evolution under coupled THMC conditions.
- Deep understanding of thermal recovery mechanisms heat transfer physics and flow behavior in high-temperature reservoirs.
- Experience with discrete fracture network (DFN) dual-porosity and Embedded Discrete Fracture Models (EDFM) to capture reservoir heterogeneity and fracture connectivity.
- Skilled in gridding upscaling and petrophysical property modeling to balance computational performance and simulation accuracy.
- Analytical thinker capable of interpreting complex field and laboratory data performing sensitivity analyses and optimizing model performance.
- Collaborative detail-driven engineer who thrives in multi-disciplinary environments bridging geoscience geomechanics and field operations.
Preferred but Not Required
- Experience with Enhanced Geothermal Systems (EGS) or coupled thermal-hydraulic-mechanical-chemical simulations.
- Familiarity with fracture closure effects stress anisotropy and reservoir stimulation strategies.
- Background in startup R&D or applied innovation environments with hands-on model iteration and fast experimental feedback loops.
- Exposure to DOE / ARPA-E / SBIR geothermal or subsurface programs (proposal writing technical reporting or milestone tracking).
BenefitsEden is proud to be an equal opportunity workplace and is an affirmative action employer. We are committed to equal employment opportunities regardless of race color ancestry religion sex national origin sexual orientation age citizenship marital status disability gender identity or Veteran status. If you have a disability that requires accommodation please let us know by emailing admin (at)
DescriptionAbout UsEden is pioneering sustainable natural resource recovery by using electricity to enhance subsurface permeability. Our Electrical Reservoir Stimulation technology offers a precise water-efficient alternative to traditional hydraulic fracturing reducing environmental risks while max...
DescriptionAbout Us
Eden is pioneering sustainable natural resource recovery by using electricity to enhance subsurface permeability. Our Electrical Reservoir Stimulation technology offers a precise water-efficient alternative to traditional hydraulic fracturing reducing environmental risks while maximizing resource extraction.
Backed by leading public and private institutions we have raised $24M including $14M in dilutive capital from industry leaders such as Anglo American and Helmerich & Payne along with climate-focused investors like the Grantham Foundation. Additionally we have secured $10M in non-dilutive funding primarily through four DOE ARPA-E grants that support our R&D in frontier industries.
Headquartered in Somerville MA and with an office in Houston TX Edens team of 16 experts specializes in geophysics geochemistry high-voltage engineering and subsurface tool design. We are actively demonstrating our next-generation permeability enhancement technology across diverse geologies worldwide collaborating with industry leaders in geothermal energy geologic hydrogen carbon storage and mining to redefine resource recovery for a carbon-neutral future.
Looking ahead we are preparing for surface and subsurface field tests in cooperation with our supportive technical partners.
Your Impact
- Develop and refine 3D reservoir models in Petrel from geologic interpretations incorporating gridding upscaling and facies modeling to capture heterogeneity and optimize simulation accuracy.
- Distribute petrophysical properties and integrate natural and induced fractures using DFN dual-porosity and Embedded Discrete Fracture Models to achieve realistic subsurface representations.
- Design and execute hydraulic fracture simulations in Kinetics calibrating permeability connectivity and fracture geometry for high-fidelity results.
- Configure and run full-field thermal recovery simulations in Intersect to evaluate Enhanced Geothermal System (EGS) performance including cold-water injection and heat extraction modeling.
- Simulate thermal-hydraulic-mechanical-chemical (THMC) coupling to assess long-term reservoir behavior fracture evolution and energy recovery sustainability.
- Partner with geologists geomechanical engineers and field teams to integrate multi-disciplinary data validate models and optimize stimulation strategies.
- Identify and quantify key reservoir uncertainties through sensitivity analysis guiding field development and design decisions.
- Contribute to next-generation geothermal reservoir modeling frameworks to enhance recovery efficiency and accelerate EGS commercialization.
RequirementsAbout You
- Masters or PhD (or equivalent expertise) in Petroleum Reservoir or Geothermal Engineering or a closely related subsurface discipline.
- 3 years of experience building and running 3D reservoir models and full-field simulations ideally within geothermal or unconventional systems.
- Strong command of Petrel Kinetics and Intersect for model construction upscaling fracture integration and thermal recovery simulation.
- Proficient in fracture modeling and geomechanics including stress analysis fracture propagation and permeability evolution under coupled THMC conditions.
- Deep understanding of thermal recovery mechanisms heat transfer physics and flow behavior in high-temperature reservoirs.
- Experience with discrete fracture network (DFN) dual-porosity and Embedded Discrete Fracture Models (EDFM) to capture reservoir heterogeneity and fracture connectivity.
- Skilled in gridding upscaling and petrophysical property modeling to balance computational performance and simulation accuracy.
- Analytical thinker capable of interpreting complex field and laboratory data performing sensitivity analyses and optimizing model performance.
- Collaborative detail-driven engineer who thrives in multi-disciplinary environments bridging geoscience geomechanics and field operations.
Preferred but Not Required
- Experience with Enhanced Geothermal Systems (EGS) or coupled thermal-hydraulic-mechanical-chemical simulations.
- Familiarity with fracture closure effects stress anisotropy and reservoir stimulation strategies.
- Background in startup R&D or applied innovation environments with hands-on model iteration and fast experimental feedback loops.
- Exposure to DOE / ARPA-E / SBIR geothermal or subsurface programs (proposal writing technical reporting or milestone tracking).
BenefitsEden is proud to be an equal opportunity workplace and is an affirmative action employer. We are committed to equal employment opportunities regardless of race color ancestry religion sex national origin sexual orientation age citizenship marital status disability gender identity or Veteran status. If you have a disability that requires accommodation please let us know by emailing admin (at)
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