Numerical simulation

made accessible

Why Dotblocks?

Because real innovation happens when everyone can contribute

Heavy design-to-compute loops

40
days on average

Complex collaboration, heavy tools, and generic solvers stall development and design cycles.

Steep learning curve

500
days on average

Traditional simulation needs heavy training and a strong technical background

Collaboration bottleneck

1
collaborator per simulation

Traditional software are built for single-user work, making cross-team collaboration on the same project painfully hard.

How it works?

Three steps
to accelerate your workflow

Build.

The Tool Factory allows you to build accessible and highly performant numerical simulation tools.

Average tool creation time : a few minutes
Lattice Boltzmann Method (LBM)
Boundary Element Method (BEM)
Population Method (PBE)
Immersed Boundary Method (IMB)
Finite Element Method (FEM)
Spectral Element Method (SEM)

The Tool Factory guides users through the creation of the best available tool for their application case by suggesting the optimal numerical methods and coupling. A right tool to answer the right question.

Use.

Instantly deploy your simulation tools and enable your team to use them wherever they are thanks to a simple interface.

State-of-the-art numerical methods, up to 100x faster than traditional solvers

Each tool provides a minimalist, user-friendly interface for defining simulation inputs. The processing outputs are then displayed in a wide range of aesthetic visualizers to give you clear insights into your application cases.

Share.

Share your simulation results and insights with all stakeholders through interactive dashboards and reports.

100% of input and output simulation data is saved in the platform.

The platform enables collaboration between teams by providing a central space for data historization and sharing. The added value of numerical simulation remains accessible over time without the risk of knowledge loss.

Application cases

From industry challenges to solutions: explore some of our use cases.

How are our components built ?

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Constant scientific monitoring

We track the latest scientific publications, nonstop. We attend top conferences and research congresses and host talks with leading researchers, keeping strong and multi-channel ties to academia around the world.

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Best programming languages

Python for flexibility and rapid iteration. Rust for blistering performance and safety. React.js for sleek, refined interfaces users love.

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Rigorous validation procedure

We validate algorithms and numerical methods against benchmark cases from the literature and alternative approaches. We stress-test models on numerous industrial scenarios and secure peer confirmation in academic circles.

What they say about DotBlocks

Trusted by industry leaders and top-notch researchers

Working with DotBlocks has been an outstanding experience. Their state-of-the-art numerical methods accelerated our numerical simulations by up to 330X. That level of performance makes it much easier to run the simulation tool directly in our production processes, tightening process control and enabling real-time optimization.

Clear, pragmatic and efficient, exactly what we expect from Industry 4.0.

Lidie Rousseau
R&D projet leader
ISOVER

Lidie Rousseau R&D projet leader ISOVER

Since its creation, I’ve seen in DotBlocks a tremendous opportunity for the numerical simulation of complex processes that are out of reach for traditional approaches. Cutting-edge numerical methods, each relevant to a specific kind of problem, are seamlessly integrated into a modular framework, allowing the creation of custom numerical tools.

It has also been a true pleasure meeting the DotBlocks team, who are exceptionally warm and whose technical expertise commands deep respect.

Daniel Weisz-Patrault
CNRS Researcher at Ecole Polytechnique
Professor at Ecole Nationale des Ponts et Chaussées

Daniel Weisz-Patrault CNRS Researcher at Ecole Polytechnique Professor at Ecole Nationale des Ponts et Chaussées

DotBlocks employs state-of-the-art mathematical models for tackling the most difficult problems involving population balances and polydisperse multiphase flows.

Their dynamic research team is highly motivated to tackle real-world R&D problems efficiently and effectively to meet the needs of their industrial customers in a timely fashion.

Rodney Fox
Distinguished Professor in Engineering
Iowa State University

Rodney Fox Distinguished Professor in Engineering Iowa State University

I had the pleasure of meeting DotBlocks team during scientific discussions on the study methods of the properties of numerical schemes. Thanks to their high-level theoretical and practical expertise across a wide range of numerical methods, this team of young researcher-engineers designs and develops software to accurately simulate industrial processes.

It is a fine example of synergy between applied mathematics and industry, the kind we would like to see more of in our country

Daniel Bouche
Research director
CEA

Daniel Bouche Research director CEA

I’ve had the opportunity to collaborate with DotBlocks to develop numerical tools utilizing advanced physical models to improve our industrial operations. Their theoretical models are state-of-the-art, on par with the latest academic research, and their numerical implementations and validations are remarkably efficient and accurate. I truly believe in the value of a physical approach to understanding and improving industrial processes.

DotBlocks exemplifies this perfectly.

David Bousquet
Industry 4.0 Development Leader
ISOVER

David Bousquet Industry 4.0 Development Leader ISOVER