Computational Modelling & Design
Message from the Directors:
GPU-Prime is a consultancy company, which was spun out from university research. We are a team of highly skilled professional researchers and software developers in the fields of computational modelling and design optimisation of flow processes, with a special focus on unsteady computational aerodynamics and aeroacoustics. We help our customers to reduce the total design time of the product development by replacing expensive wind tunnel tests with high-fidelity flow and noise simulations.
Our product is GPU CABARET, which is a cutting-edge Large Eddy Simulation solver equipped with modern pre- and post-processing tools and accelerated on Graphics Processing Units (GPUs). Key advantages of our product include a semi-automatic grid generation process based on OpenFoam procedures, which saves weeks of the developer time for complex industrial geometries and a very fast time to solution using a moderate GPU workstation or cloud computing resource. The solver works with standard CAD geometry files and can also recognise all input mesh formats acceptable by OpenFoam. For flow visualisation, we recommend to use the solver with ParaView (open source). For far-field noise calculations, the acoustic post-processing (FW-H method) is included at no additional cost, which runs in parallel on GPUs/CPUs. Our software runs on customers' GPU hardware (e.g. NVIDIA, CUDA) or on cloud HPC services such as AWS EC2 or Microsoft Azure HPC. We pride ourselves for delivering tailored engineering solutions for our customer needs, some of which include large international and European organisations.
If interested in our product, for a quick chat and arrange a free demonstration version please feel free to contact us directly. Please take a note of our data privacy and terms of use policies.
Email: s.karabasov@gpuprime.co.uk
Mobile: +44 7445 785504
Postal address: 16 St Thomas Close, Cambridge, CB23 7DN, UK
Looking forward to hearing from you,
Sergey Karabasov and Annabel Markesteijn


Computational Technology
High-fidelity rapid turn-around-time simulations of flow and noise tailored for our clients problems in aerospace and energy sector

