Our Game Plan
Are you driven by understanding how the Earth actually behaves under extreme conditions Do you believe the future of geothermal energy depends on mastering rock mechanics stress and fracture
At Telura were developing the next-generation drilling system which uses ultra-high-voltage electro-impulses to fracture hard rock essentially destroying with lightning to enable economically viable drilling beyond todays hotspots and unlock affordable baseload energy anywhere. The physics is well understood but success depends on how this technology interacts with real subsurface conditions.
Founded in 2025 and based in Munich Telura is working closely with leading European universities is supported by SPRIND and has raised $5m to date from leading German investors.
As we move from validation toward field-relevant testing subsurface understanding becomes a first-order design driver. Were looking to connect with a senior subsurface and geomechanics leader to help shape how our technology meets the Earth.
Tasks
What you will do
- Provide technical leadership across subsurface geomechanics and rock physics as they relate to deep geothermal drilling
- Help define how electro-impulse drilling interacts with different lithologies stress regimes temperatures and pressure environments
- Shape the subsurface assumptions and models that inform tool design testing strategy and scale-up
- Advise on fracture behaviour damage mechanisms and rock response under high-energy impulse loading
- Support definition of depth targets geological envelopes and deployment constraints for early customer trials and pilot projects
- Act as a technical sparring partner to the CTO and engineering team on subsurface-related risks and opportunities
- Support strategic engagement with customers partners research collaborators and investors by providing subsurface credibility framing trial locations geological envelopes and subsurface risk assumptions in key technical and commercial discussions
Requirements
What we are looking for
- Deep expertise in geomechanics rock physics geology or subsurface engineering
- Background in geothermal mining oil & gas or related deep subsurface domains
- Strong intuition for how stress fracture and thermal effects govern drilling outcomes
- Ability to translate complex subsurface behaviour into engineering-relevant guidance
- Experience working with subsurface models and data to inform engineering and deployment decisions rather than purely academic analysis
- Comfort operating at the interface of modelling experimentation and real-world uncertainty
- A collaborative mindset and interest in shaping a new drilling paradigm from first principles
Benefits
What we offer
- A chance to define the foundations of a breakthrough drilling technology and unlock geothermal energy at global scale
- Early influence on system architecture testing strategy and deployment assumptions
- Flexible initial engagement model (full-time part-time or advisory)
- Direct collaboration with the founding and engineering leadership
- Equity participation aligned with long-term commitment and impact
- A modern office in the Munich Urban Colab embedded in an innovation ecosystem
- Accident insurance and supplementary company health insurance
- Company pension scheme
Ready to help redefine how we drill into the Earth
Wed love to hear how youd help bridge subsurface physics and breakthrough drilling technology.
Our Game PlanAre you driven by understanding how the Earth actually behaves under extreme conditions Do you believe the future of geothermal energy depends on mastering rock mechanics stress and fractureAt Telura were developing the next-generation drilling system which uses ultra-high-voltage elect...
Our Game Plan
Are you driven by understanding how the Earth actually behaves under extreme conditions Do you believe the future of geothermal energy depends on mastering rock mechanics stress and fracture
At Telura were developing the next-generation drilling system which uses ultra-high-voltage electro-impulses to fracture hard rock essentially destroying with lightning to enable economically viable drilling beyond todays hotspots and unlock affordable baseload energy anywhere. The physics is well understood but success depends on how this technology interacts with real subsurface conditions.
Founded in 2025 and based in Munich Telura is working closely with leading European universities is supported by SPRIND and has raised $5m to date from leading German investors.
As we move from validation toward field-relevant testing subsurface understanding becomes a first-order design driver. Were looking to connect with a senior subsurface and geomechanics leader to help shape how our technology meets the Earth.
Tasks
What you will do
- Provide technical leadership across subsurface geomechanics and rock physics as they relate to deep geothermal drilling
- Help define how electro-impulse drilling interacts with different lithologies stress regimes temperatures and pressure environments
- Shape the subsurface assumptions and models that inform tool design testing strategy and scale-up
- Advise on fracture behaviour damage mechanisms and rock response under high-energy impulse loading
- Support definition of depth targets geological envelopes and deployment constraints for early customer trials and pilot projects
- Act as a technical sparring partner to the CTO and engineering team on subsurface-related risks and opportunities
- Support strategic engagement with customers partners research collaborators and investors by providing subsurface credibility framing trial locations geological envelopes and subsurface risk assumptions in key technical and commercial discussions
Requirements
What we are looking for
- Deep expertise in geomechanics rock physics geology or subsurface engineering
- Background in geothermal mining oil & gas or related deep subsurface domains
- Strong intuition for how stress fracture and thermal effects govern drilling outcomes
- Ability to translate complex subsurface behaviour into engineering-relevant guidance
- Experience working with subsurface models and data to inform engineering and deployment decisions rather than purely academic analysis
- Comfort operating at the interface of modelling experimentation and real-world uncertainty
- A collaborative mindset and interest in shaping a new drilling paradigm from first principles
Benefits
What we offer
- A chance to define the foundations of a breakthrough drilling technology and unlock geothermal energy at global scale
- Early influence on system architecture testing strategy and deployment assumptions
- Flexible initial engagement model (full-time part-time or advisory)
- Direct collaboration with the founding and engineering leadership
- Equity participation aligned with long-term commitment and impact
- A modern office in the Munich Urban Colab embedded in an innovation ecosystem
- Accident insurance and supplementary company health insurance
- Company pension scheme
Ready to help redefine how we drill into the Earth
Wed love to hear how youd help bridge subsurface physics and breakthrough drilling technology.
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