Accurate Meshless Computational Fluid Dynamics. Whether you’re new to fluid dynamics or have years of experience, our proprietary “meshfree” technology makes accurate fluid simulation easy.
Funding
Funding not disclosed
Founders
Product
Problem
Traditional computational fluid dynamics (CFD) relies on mesh generation, which is time‑consuming, error‑prone, and difficult to apply to complex or moving geometries. This creates a bottleneck for engineers and researchers who need rapid, accurate fluid simulations to inform product design and analysis.
Solution
Morpheus Fluid Dynamics offers a proprietary meshfree CFD engine that eliminates the need for manual mesh creation. By using a particle‑based numerical formulation, the platform can directly discretize the fluid domain around arbitrary shapes, including free‑surface and multiphase flows. The solver has been validated on a broad set of benchmark problems, ensuring that accuracy is comparable to conventional mesh‑based methods. Users interact with a streamlined setup workflow that focuses on geometry and boundary conditions, allowing them to iterate designs quickly across multiple industries. The resulting simulations are delivered through standard data formats and visualisation tools, enabling seamless integration into existing engineering pipelines.
Target Audience
Primary customers are engineers and researchers in aerospace, automotive, medical device, environmental planning, oil & gas, and defense sectors who require fast, accurate fluid simulations for design optimisation and risk assessment.
Features
- Meshfree particle discretisation that removes mesh generation and remeshing steps
- Proven accuracy on benchmark cases covering laminar, turbulent, free‑surface, and multiphase flows
- Automatic handling of complex and moving geometries without user‑defined mesh constraints
- High‑performance solver optimized for large dynamic‑range problems and rapid design iteration
- Compatibility with common CAD and post‑processing tools via standard export formats
- Scalable computational backend that can run on workstation GPUs or cloud clusters