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Summer 2022 | Product peek

Accurate pollutant prediction with Equivalent reactor networks

by Fabio Villa, EnginSoft
Futurities Year 19 n°2, Summer 2022

The simulation of reacting flows is critical for developing competitive products in diverse industries: transport, power generation, materials processing, the chemical industry, and many others. Improving designs for these cases is difficult because they often consist of systems with complex geometries, boundary conditions, and physics, including large networks of chemically reacting species, turbulence, and radiation.

The more accurate the fuel model, the more realistically the fuel performance of your design can be predicted. Ansys Chemkin couples Multiphysics simulations incorporating advanced physical models with an advanced chemical solver to provide full simulation capabilities for reacting flows. Many tools have recently been included in the Ansys CFD enterprise license.

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CASE STUDY

Numerical analyses of the heat transfer processes of a key cooling system in the ITER reactor

Supporting the design of a critical system with realistic numerical simulations of heat radiation and conjugate heat transfer

The ITER reactor’s electron cyclotron heating and current drive (EC H&CD) system launcher requires an effective cooling system due to the strong thermal loads it supports. In supporting the design of this cooling system, NINE performed several numerical studies using the Ansys simulation tools

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