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Green Hydrogen · Simulation Study

Hit your cost-per-kilogram targets without guessing your way through stack design.

Simulation studies for electrolyser stack performance, membrane degradation, bubble dynamics, and thermal management.

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EUR 9M+
Cost avoided by preventing same failure mode across 19 remaining stacks (PEM case)
93%
Anomalous degradation rate corrected (30–40 µV/h → 2–3 µV/h) by ramp rate limit change
4–6 wks
Study to controller parameter change that prevented stack fleet failure
Applications

What we can study for you

  • PEM degradation prediction under dynamic load profiles
  • Bubble dynamics optimisation at electrode surfaces
  • Stack lifetime projection from accelerated test data
  • Membrane water and proton transport characterisation
  • Thermal management and flow distribution design
  • Accelerated degradation mapping for qualification protocols
Our Approach

Predict stack lifetime and efficiency from first-principles electrochemistry

We run simulation studies that model electrolyser performance from electrode-level electrochemistry through membrane transport to stack-level thermal management. Degradation mechanisms are captured in the physics, so you can predict lifetime without waiting for long-duration tests to finish.

  • Electrode-level simulation of bubble nucleation and departure, capturing the efficiency losses that cell-level models miss
  • Membrane transport and degradation modelling including chemical attack, mechanical fatigue, and thermal effects
  • Stack-level thermal-hydraulic simulation for flow distribution, temperature uniformity, and hotspot identification
  • Accelerated degradation prediction that maps short-duration test data to long-term lifetime projections using physics, not curve fitting
Studies We Offer

Specific studies, fixed scope.

4–6 week study
Stack Lifetime & Degradation Prediction

Modelling proton exchange membrane (PEM) degradation mechanisms to predict electrolyser lifespan under real operating conditions.

3–4 week engagement
Efficiency & Bubble Dynamics Optimisation

Simulating oxygen bubble evolution and mass transport limits to optimise operating parameters and hit cost-per-kilogram targets.

Describe your Green Hydrogen challenge.

We'll scope a study within 48 hours and tell you whether our platform can help. No commitment required.

Grab a scoping call

or email [email protected]