RheoCube is a cloud-based platform that utilizes advanced computational fluid dynamics to simulate complex fluid behaviors in various applications. It provides engineers and researchers with an accessible tool to optimize product designs and processes, reducing development time and costs associated with physical prototyping.
Funding
$2.9M 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
Physical prototyping of complex fluids is time-consuming and expensive, hindering efficient product design and process optimization. Traditional computational fluid dynamics (CFD) simulations often require specialized expertise and high-performance computing infrastructure, limiting accessibility for many engineers and researchers.
Solution
RheoCube is a cloud-based platform that enables users to simulate the behavior of complex fluids using advanced computational fluid dynamics. The platform provides an accessible tool for engineers and researchers to optimize product designs and processes by predicting fluid behavior under various conditions. By leveraging cloud computing, RheoCube eliminates the need for expensive hardware and specialized software installations. The platform's intuitive interface and automated workflows simplify the simulation process, allowing users to focus on analyzing results and making informed decisions.
Target Audience
RheoCube targets engineers and researchers in industries such as chemical engineering, materials science, and food processing who need to simulate and optimize complex fluid behavior.
Features
- Cloud-based platform accessible from any web browser
- Advanced CFD algorithms optimized for complex fluid simulations
- Intuitive interface with pre-built templates and automated workflows
- Parameter studies to explore a wide range of design options
- Visualization tools for analyzing simulation results
- Scalable computing resources to handle large and complex models