Success cases
Hydrogen Storage in Metal Hydrides: High Volumetric Density and Digital Twin Application in Fluid Simulation
Maximizing hydrogen storage with less material using metal hydrides, and leveraging digital twins to optimize fluid simulation
Challenge
A group of researchers approached Arvor to analyze methods for hydrogen storage using metal hydrides. The study explored the market for these compounds, evaluating different materials, their advantages and disadvantages, global industry trends, and current applications. Additionally, business models related to digital twin technology for fluid dynamics simulation were explored, an area in which the team has significant expertise.
Solution
At Arvor, we conducted a focused analysis on hydrogen storage using metal hydrides. These chemical compounds offer advantages, such as high volumetric capacity, but also face challenges like high cost, weight due to their metallic nature, limited natural availability, and long-term durability. These factors explain why they have not yet been widely adopted in the market.
Regarding business models for digital twin simulation software, the market is growing. The trend is towards creating tailored services and solutions designed to meet specific client needs.
Result
Thanks to the analysis, a strong value proposition was developed, emphasizing the implementation of this technology to optimize hydrogen storage using metal hydrides. This approach increases energy efficiency, reduces storage space requirements, and creates new opportunities in sectors such as sustainable mobility and renewable energy. Furthermore, integrating digital twins in fluid dynamics simulation adds value by improving solution precision and customization, facilitating broader adoption in industrial and energy markets.

“A strong value proposition was developed, emphasizing the implementation of this technology to optimize hydrogen storage using metal hydrides.”
Success case studies in the sector Green energy
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