Predict accurate performance of your designs

In order to react quickly to market demands, to reach perfection by avoiding mistakes, to create strategies that will provide competitive advantage, it is inevitable for corporations of production industry to select methods that -during product development phase- is beyond standard engineering works, candidate to model the reality. And that is advanced engineering applications.

In brief, advanced engineering applications are carried out to determine the behavior of a designed object against internal and external impacts, by forming and solving its 3D numerical mesh with numerical method appropriate to the kind of analysis. In another sense it is virtual reality. For an object whose design is finalized with appropriate and sufficient advanced engineering application;
  1. There is no surprise after the production
  2. There is no waste of material
  3. There is no missing function
  4. There is no need for an experimental study or at least it's minimized

To realize above mentioned applications, DSRI works with a strong team formed by people studied in different engineering disciplines such as Naval Architecture, Mechanical Engineering, Aeronautics and Astronautics. Team members have around 10 years of experience on advanced engineering applications, especially related to offshore structures' static and dynamic analyses with Finite Element Method (FEM) and Computational Fluid Dynamics (CFD). DSRI is not only working for offshore structures but also provides engineering analysis services to their customers for onshore structures for industries such as building, machinery, aviation, automotive, etc.

The aim of DSRI's Advanced Engineering team is to provide services to their customers to enable them proving that the particularities of products or structures, which will be served for the people's use, are stable, reliable and can meet the requirements. For that reason this team uses the most advanced software tools and carries out the verification and improvement of engineering designs in every level. These engineering applications are mentioned as follows:

Structure Analyses

Fluid Dynamics Analyses

Fluid-Structure Interaction Analyses

Vibro Acoustic Noise

Structure Analyses

  1. Strength Analyses
  2. Vibration Analyses
  3. Dynamic & Shock Analyses
  4. Crash Test Analyses
  5. Mechanism Simulation Analyses
  6. Thermal Analyses
  7. Fatigue Analyses
  8. Buckling Analyses

Fluid Dynamics Analyses

  1. Acoustics
  2. Aerodynamics
  3. Multi Phase Flow Analyses
  4. Heat and Mass Transfer

Fluid-Structure Interaction Analyses

  1. Hydroelastic Vibration Analyses
  2. Solid Dynamics in Fluid
  3. Underwater Explosion Analyses

Vibro Acoustic Noise

  1. Noise Analyses with SEA Method
  2. Underwater Noise Analyses