End-to-end differentiable design platform — from 1D meanline sizing to 3D CFD-optimised, manufacturable blade geometry. Exact CAD sensitivities, Newton-Krylov adjoint solver, and adaptive meshing with over 1000 design parameters.
Computational fluid dynamics analysis, aerodynamic consulting, and engineering advisory services. Expertise in turbomachinery aerodynamics, adjoint methods, and high-performance computing for industrial and academic clients.
Development and licensing of blade-design IP, differentiable CAD kernels, and adjoint CFD technology. Building a patent portfolio covering novel design methodologies and solver algorithms.
Patent landscape analysis, technology valuation, and licensing strategy for turbomachinery and computational engineering. Helping clients protect and monetise their engineering innovations.
Blade prototype fabrication, aerodynamic testing, and experimental validation. Bridging the gap between computational design and physical hardware with rapid prototyping and test campaigns.
Turbomachinery design workshops, CFD training programmes, and academic partnerships. Building capability in next-generation design methods for industry professionals and research institutions.
GPU accessory and hardware product development alongside HPC software for CPU/GPU architectures — scalable solvers and MPI/GPU-accelerated workflows for industrial simulation.
New mathematical models for scientific and engineering problems. Reduced-order modelling, surrogate construction, and physics-informed formulations for turbomachinery, fluid dynamics, and structural analysis.
Products and services for high-quality, data-intensive visualisation. Live rendering of massive engineering datasets on parallel computing infrastructure — flow fields, blade surfaces, and performance maps with GPU-accelerated real-time interaction.