OUR APPROACH

A transparent route
from question to insight.

We define the objective, build the evidence and explain what the results support.

01

Problem definition

Agree the engineering decision, operating conditions, relevant quantities and scope.

02

Geometry preparation

Identify the geometric detail needed to represent the relevant physics.

03

Mesh generation

Develop a resolution strategy suited to the flow, geometry and outputs.

04

Numerical setup

Select physical models, boundary conditions, schemes and solver controls.

05

Simulation

Run the agreed cases and monitor convergence or time-dependent behaviour.

06

Verification & validation

Check numerical sensitivity and compare with suitable reference data when available.

07

Engineering interpretation

Connect flow structures, loads, temperatures or losses to the question.

08

Review & handover

Discuss findings, limitations, deliverables and the next useful action.

TOOLS THAT SERVE THE PHYSICS

Flexible methods.
Traceable workflows.

Our open-source approach supports customised setups and reproducible analysis.

OpenFOAMFlow simulation and custom numerical workflows
SU2Aerodynamic simulation and analysis
PythonAutomation and quantitative post-processing
ParaViewScientific visualisation and flow interpretation

LET’S WORK THROUGH IT

What do you need to understand?

Tell us about your flow challenge. We’ll help define the right next step.

Discuss your project