Consultancies and Evaluations of Numerical Aerodynamics (CFD)

The consultancy and evaluation services in the computational field, are distributed in more sectors (Aeronautics, Automotive, Marine, Civil and Renewable Energy, Sports) and various types of flow (external flows, internal flows).

The studies are executed through the use of high performance computing resources (HPC).

The CFD approach can be considered a valid instrument and, with respects to the experimental approach, it offers the advantage of providing a complete description of the flow field. The CFD solves the Navier-Stokes equations and, therefore, is able to provide coherent responses, reducing time and costs, compared to an experimental approach. This aspect is particularly important because it allows to realize also the procedures of numerical optimization and of fluid-structure interaction.

The CCFD has extensive experience in the use of many commercial Software and not such to meet the demand of an increasingly complex industrial research while maintaining a high level of accuracy

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The CCFD has gained solid expertise in the aeronautics sector. Different types of study have been carried out in this area: from the simple external flow to complex studies such as transonic and aeroelastic analysis up to valuation of the differential of dynamics.

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The CCFD has collaborated in the development of many cars of high performance Italian production. Thermo-fluid dynamic calculation methods have also been developed to obtain information on the measures to improve the comfort in the passenger compartment.

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The CCFD has studied many phenomena, including the boat’s behaviour in the presence of wave and the response of the individual components of a vessel to different operating conditions.

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The CCFD has performed thermal analysis for the evaluation of air conditioning systems for civil buildings and has used the knowledge in computational field to improve control of the exploitation of energy resources and to reduce environmental impact.

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The high confidence in the field of computational CCFD group allowed to apply numerical methods also in sport to observe and study the flow around to the competitive equipment and to increasingly understand the flow mechanisms during the impact with the human body.

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The CCFD has gained experience in the development of automated processes, operated by optimization algorithms, even for multi-objective and multi-disciplinary projects.

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Many computational fluid activities were included within multi-physics nature projects. In particular, the CCFD group has matured solid knowledge in procedures and in the analysis of fluid-structure interaction.

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