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Fermentation & Bioprocessing · Simulation Study

Scale your bioprocess from bench to plant without the costly surprises in between.

Simulation studies for bioreactor hydrodynamics, fermentation yield optimisation, scale-up prediction, and contamination risk analysis.

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USD 17–21M
Revenue impact before root cause established (3 sterility failures, CDMO MHRA case)
USD 8.7M+
Per contamination incident: batch losses + regulatory investigation overhead
4–6 wks
Bioreactor thermal-fluid simulation to resolve contamination root cause
Applications

What we can study for you

  • Bioreactor scale-up prediction from bench to production scale
  • Oxygen transfer rate optimisation for target vessel geometries
  • Shear stress mapping for cell viability in sensitive organisms
  • Contamination risk analysis from dead zones and thermal gradients
  • Mixing dead-zone identification and impeller design evaluation
  • Fed-batch feeding profile optimisation for yield maximisation
Our Approach

Coupled CFD and biological kinetics across the full scale range

We run simulation studies that couple bioreactor hydrodynamics (mixing, oxygen transfer, shear, temperature distribution) with biological kinetic models for your specific organism and process. The result is a scale-up prediction that identifies the physical bottlenecks before you encounter them in hardware.

  • Multiphase CFD for bioreactor hydrodynamics including impeller design, sparger performance, and bubble size distribution
  • Oxygen transfer rate and dissolved oxygen distribution prediction as a function of vessel geometry and operating conditions
  • Shear stress mapping and its impact on cell viability for shear-sensitive organisms
  • Contamination risk analysis: identifying thermal gradients, dead zones, and cleaning-in-place blind spots
Studies We Offer

Specific studies, fixed scope.

4–6 week study
Scale-Up & Bioreactor Performance Prediction

Coupled CFD and biological kinetics simulation to predict performance at target scale and identify physical bottlenecks before hardware commitment.

2–4 week engagement
Contamination Risk & Process Optimisation

Hydrodynamic analysis of dead zones, thermal gradients, and CIP coverage to reduce batch failure risk and optimise operating conditions.

Describe your Fermentation & Bioprocessing 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]