SimScale provides a cloud-native engineering simulation platform that enables real-time analysis of fluid dynamics, structural mechanics, thermodynamics, and electromagnetics without the need for specialized hardware. This technology allows engineering teams to conduct high-fidelity multiphysics simulations efficiently, reducing R&D costs and accelerating product development cycles.
Funding
$29.2M raised to dateRaised to date based on public sources. This may differ from the amount the company actually raised and is based only on what is publicly available on the internet.







Founders
Product
Problem
Engineering teams often face challenges in efficiently conducting high-fidelity multiphysics simulations due to the need for specialized hardware and disconnected software tools. This can lead to increased R&D costs and longer product development cycles.
Solution
SimScale offers a cloud-native engineering simulation platform that enables real-time analysis of fluid dynamics, structural mechanics, thermodynamics, and electromagnetics. The platform eliminates the need for specialized hardware, providing instant access from any browser. It unifies design and simulation through early adoption of advanced workflows, empowering engineering teams to iterate designs faster. Simulation data is seamlessly stored for direct AI training, and the platform offers Google Docs-style collaboration features for real-time sharing and analysis.
Target Audience
The primary audience includes engineers and engineering teams across various industries such as architecture, automotive, electronics, energy, and machinery, who seek to optimize designs and reduce R&D costs.
Features
- Cloud-native platform accessible from any browser without downloads or special hardware
- Broad physics capabilities including fluid dynamics (CFD), structural mechanics (FEA), thermodynamics, and electromagnetics
- AI-powered simulation with seamless data storage for direct AI training and design of experiments
- Real-time collaboration with Google Docs-style features for sharing and analyzing simulations
- Scalable high-performance computing (HPC) cloud compute for running simulations of any size in parallel
- CAD import and editing capabilities for various CAD formats
- Automatic and manual mesh generation with tet-, hex-, or polyhedral meshing
- Best-of-breed solvers from each method (FV, FE, LBM, and more)
- Integrated 3D post-processing environment
- API for customization and automation of simulation workflows