Engineering software
CAE-native engineering
Software that connects
physics and AI
Simulation software, custom development, and engineering consulting.
From geometry and mesh through analysis, automation, and judgement — one continuous flow.
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Explore software, engineering services, technical articles and company information.
Engineering software
Specialised software built for engineers
Physics-based solvers and engineering tools for design, simulation and operation.
GPU-native CFD
Wake CFD
A GPU-native compressible flow solver joined with a desktop client and AI-assisted workflows.
Early accessDigital twin · Indoor simulation
Boreas FFD
Rapidly computes indoor temperature and airflow, from design comparisons to near-real-time digital twins.
Electric machine design
Indux MEC
Magnetic-equivalent-circuit design software that connects motor specifications to performance results.
Services
Engineering delivery beyond the product
We work from your existing data, in-house code, and ways of working, and deliver software people actually use.
Custom engineering software
Custom engineering software development
Simulation automation, legacy code modernisation, internal platforms, and purpose-built interfaces.
Learn moreEngineering application
CAE application and consulting
From modelling complex physics to validation, interpretation, and workflow design.
Learn moreHow we approach problems
All technical content
Research
Implementing MPI + OpenMP Hybrid to the End, Then Going Back to Pure MPI
The CPU path of a GPU-oriented solver was slow, so we added OpenMP and then went on to try a hybrid with MPI. The hybrid led by 11% on 8 cores but lost the lead at 32, and we found out why most CFD codes go pure MPI on the CPU.
Research
Dynamic CFL Control of a CFD Solver with an LLM
We built a controller that adjusts CFL in real time during a CFD run using a commercial LLM, and attached it to the Wake solver. The LLM alone diverged; combined with a fast rule-based safety layer, the hybrid converged 27% faster than a human-tuned constant CFL.
Research
Generating S-duct Intake Geometry with Signal Processing and Evaluating Flow Distortion
We developed a procedure that blends a non-circular intake throat smoothly into the circular engine face, then quantified flow distortion against SAE-ARP-1420-B. Two geometries differed by only 0.05% in pressure recovery, yet their DC60 values were an order of magnitude apart.
Why CLEW
We design not just the result, but the next action.
CLEW connects physical models, domain knowledge, software, and AI into a single working flow. Products make engineering capability repeatable, services fit that capability to your environment, and research proves the next product.
About CLEW- Physics-based
- Grounded in verifiable physical models
- Workflow-native
- Following how engineers actually work
- Built for engineers
- Designing the work, not just a tool
If you have a problem to solve, we will find the starting point with you.
Product adoption · custom development · technical review