Fidelity Flow Solver for Fluids and Thermal

With Cadence Fidelity Flow as your go-to solution for a diverse range of flow challenges in aerodynamics, conjugate heat transfer, fluid-structure interaction, or complex multiphysics simulations, it delivers unmatched speed and accuracy. Its density-based and pressure-based solvers are optimized for high-speed and thermal flows, ensuring accurate results quickly. With advanced features like OpenLabs for customization, nonlinear harmonic methods for periodic unsteady simulations, and specialized modeling strategies for combustion and cavitation, Fidelity Flow is designed to tackle the most demanding engineering problems with ease.

Fidelity Flow Solver for Fluids and Thermal

With Cadence Fidelity Flow as your go-to solution for a diverse range of flow challenges in aerodynamics, conjugate heat transfer, fluid-structure interaction, or complex multiphysics simulations, it delivers unmatched speed and accuracy. Its density-based and pressure-based solvers are optimized for high-speed and thermal flows, ensuring accurate results quickly. With advanced features like OpenLabs for customization, nonlinear harmonic methods for periodic unsteady simulations, and specialized modeling strategies for combustion and cavitation, Fidelity Flow is designed to tackle the most demanding engineering problems with ease.

Fidelity Flow Solver for Fluids and Thermal features

Aerodynamics

Handles incompressible to hypersonic flows, including high-speed external flows up to Mach 20

Conjugate Heat Transfer

Solves velocity, pressure, and energy in a coupled and implicit way, speeding up workflow

Fluid-Structure Interaction (FSI)

Offers direct coupling and modal approach for predicting aeroelastic instabilities

Cavitation Modeling

Three approaches including barotropic law, thermo-tables, and transport-equation modeling

Combustion Modeling

Various strategies from classical flamelet to flamelet-generated manifolds (FGM) for complex combustion applications

Unsteady Flows

Scale-resolving detached eddy simulation (DES) capabilities for solving unsteady problems

Multiphysics Support

Handles multispecies, cavitation, Lagrangian modeling for particles and sprays with thermo-tables fluid definition

High-Speed Turnaround

Linear scaling on thousands of CPU cores and GPU optimization for fast computations

Customization with OpenLabs

Customize solver routines, source terms, and boundary conditions with easy-to-learn syntax

Nonlinear Harmonic Method

Orders of magnitude speedup for periodic unsteady simulations of rotating parts

Discuss Fidelity Flow Solver for Fluids and Thermal with a NEAX expert

NEAX is a PTC implementation partner in Vietnam — roadmap consulting, business-driven configuration, training, and operational support.