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General Fluid Analysis Integrated Environment 'FINE/Open' for Non-Structured Lattice Correspondence

A powerful and intuitive tool! A fluid analysis integrated environment that enables virtual prototyping of heat and flow.

"FINE/Open" is a highly automated general-purpose fluid analysis integrated environment that corresponds to unstructured grids. The powerful and intuitive tools for thermal fluid analysis included enable virtual prototyping of heat and flow, assisting engineers in design and rapid decision-making. The general-purpose fluid analysis software "FINE/Open" integrates a fluid analysis solver that shares the same solution algorithm as "FINE/Turbo," which has a long history and proven track record, along with a fully automated unstructured grid mesh generator and high-performance visualization processing software. [Features] - Wizard-style interface → Guides a series of tasks while displaying the shape of the analysis target - Fully automated hexahedral mesh generation in wizard form using HEXPRESS - Automated generation of hybrid meshes primarily composed of hexahedra using HEXPRESS/Hybrid → Hexahedra, tetrahedra, pyramids, prisms, boundary layers - Automatic visualization processing through specialized plotting methods for various fields and industries For more details, please contact us or download the catalog.

Related Link - http://www.numeca-jp.com/products/fine_open/

basic information

【Main Features】 ○ Flexible mesh generation is possible due to the application of discontinuous multi-block interfaces between fluid-fluid blocks and solid-fluid blocks. ○ Equipped with rotor/stator interaction functionality for turbomachinery. ○ Supports liquids, ideal gases, and real gases. ○ Capable of performing thermal fluid analysis across all flow ranges from incompressible to compressible, subsonic, transonic, supersonic, and hypersonic. ○ A wide variety of turbulence models and physical models, including Spalart-Allmaras, k-ε, k-ω, SST, etc. ○ Thermal calculation solver for large-scale conjugate heat transfer. ○ Combustion models and radiation models compatible with diffusion combustion (non-premixed combustion) and partially premixed combustion. ○ Multiphase flow models such as VOF model for free surface flow and dispersed phase models. ○ Porous media model. ○ Simulation using deformable meshes. ○ High-performance parallel computing based on MPI with automatic domain decomposition and load balancing, accelerating fluid analysis. 【Operating Environment】 ○ Compatible with 32-bit and 64-bit machines. ○ Compatible with Windows and Linux environments. ● For more details, please contact us or download the catalog.

Price information

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Applications/Examples of results

【Applicable Fields】 ○ Applicable to a very wide range of fields including full models of aircraft such as engines, pylons, wings, flaps, cooling turbine blades, and disks, as well as automotive aerodynamics, flow in multi-stage rotating machinery, and flow around environments and structures. ● For more details, please contact us or download the catalog.

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