Industrial Optimization

Industrial Optimization at a Scientific Level

Advanced Mathematical Methods

Complex industrial challenges require advanced mathematical methods.

Our focus is on the development and application of state-of-the-art optimization methods for highly complex problems, including nonlinear optimization problems.

Industrial Optimization with Math.Tec

A particular focus is on shape and design optimization based on nonlinear systems of differential equations. Such models are used in areas including fluid mechanics, structural mechanics and multiphysics applications. By combining numerical simulation with mathematical optimization methods, we develop solutions that sustainably improve products and processes in terms of efficiency, performance and resource utilization.

Your Benefits

Product Performance

Improved product performance through optimized geometries and designs

Cost Reduction

Reduced material, energy and development costs

Time Savings

Shorter development and innovation cycles

Simulation

More accurate simulation of complex physical processes

Customization

Tailored optimization solutions for specific industrial requirements

Scientific Expertise

Access to state-of-the-art scientific methods and research

Scientific Partners

Close collaboration with experienced scientific partners

A particular focus is on shape and design optimization based on nonlinear systems of differential equations. Such models are used in fluid mechanics, structural mechanics and multiphysics applications. Using numerical simulations and mathematical optimization methods, we develop solutions that sustainably improve products and processes in terms of efficiency, performance and resource utilization.

Together with our scientific partners, we address customized optimization problems across a wide range of industrial sectors. We combine cutting-edge research with practical applications, developing mathematical models and algorithms tailored precisely to the specific requirements of each project.

From mathematical modeling and the development of specialized optimization algorithms to successful implementation, we support our clients throughout demanding research and development projects. Our goal is to transform scientific excellence into measurable industrial value.

Why Use Mathematical Optimization in Industry?

Many technical systems cannot be adequately represented using conventional optimization approaches. Advanced mathematical methods, however, make it possible to realistically model complex physical interactions and identify optimal solutions at an early stage of the development process.

This can reduce the need for costly physical prototypes, shorten development cycles and enable well-founded decisions based on reliable numerical simulations.

Typical Applications

Our mathematical optimization methods are applied in areas including:

Computational Fluid Dynamics (CFD)

Aerodynamics and Hydrodynamics

Mechanical and Plant Engineering

Automotive Industry

Aerospace

Energy Engineering

Process Engineering

Materials and Structural Engineering

Multiphysics Simulations

Research and Development Projects

Your Path to Industrial Optimization

Start your optimization project with our experts today.