The startup develops aerodynamic design simulation technology that utilizes machine learning and computational fluid dynamics to enhance sports performance. By automating design processes, it enables users in various fields, including automotive and architecture, to optimize their designs for improved efficiency and effectiveness.
Funding
$420K 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
Traditional aerodynamic design and wind assessment rely on manual computational fluid dynamics (CFD) simulations, which are often complex, time-consuming, and require specialized expertise. This limits accessibility and slows down the design iteration process for various industries.
Solution
NablaFlow provides cloud-based aerodynamic simulation tools that simplify and accelerate the design process for applications ranging from sports equipment to urban planning. The platform leverages machine learning and automated workflows to enable users to easily upload 3D models, configure simulation parameters, and analyze results through interactive 3D visualizations and comprehensive reports. By democratizing access to advanced CFD, NablaFlow empowers professionals to optimize designs for improved performance, safety, and efficiency without requiring extensive CFD knowledge or specialized software. The platform offers two primary products: AeroCloud for aerodynamic performance analysis and ArchiWind for urban wind assessment.
Target Audience
NablaFlow targets professionals in automotive design, architecture, urban planning, sports engineering, and product design who need to understand and optimize the impact of wind on their projects.
Features
- Automated CFD simulation setup and execution in the cloud
- Support for STL and OBJ file formats for easy model uploading
- Intuitive interface for configuring wind speed, direction, ground effects, and rotating parts
- Interactive 3D visualizations of flow fields, streamlines, pressure contours, and surface friction
- Detailed aerodynamic performance analysis, including drag and lift coefficient plots
- Automated retrieval of wind statistics from ERA-5 and other historical datasets
- Fully automated report generation with data, images, and charts
- Option to simulate rotating parts and ground presence
- API access for custom integrations