![]() The module is helpful for CFD, heat transfer, and acoustics simulations in the absence of chemical reactions. Liquid & Gas Properties Module: The Liquid & Gas Properties Module provides tools for computing thermodynamics properties, including density, viscosity, thermal conductivity, heat capacity, ratio of specific heat, speed of sound, and more, for liquid and gas mixtures of arbitrary chemical composition.Heat Transfer Module: This Module allows you to analyse heat transfer by conduction, convection and radiation, also includes a comprehensive set of features for investigating thermal designs and effects of heat loads.Fuel Cell & Electrolyzer Module: The Fuel Cell & Electrolyzer Module provides engineers with state-of-the-art modeling and simulation tools for fuel cells and electrolyzers, along with general-purpose tools for realistic fluid flow properties and detailed electrochemical simulations.Electrodeposition Module: The Electrodeposition Module is suited for a wide variety of applications, including: metal deposition for electronics and electrical parts corrosion and wear protection decorative electroplating electroforming of parts with thin and complex structures etching electromachining electrowinning and electrorefining.Corrosion Module: The Corrosion Module allows engineers and scientists to investigate these processes, gain an understanding of the extent to which corrosion could occur over the lifetime of a structure, and implement preventative measures to inhibit electrochemical corrosion, in order to protect their structures.This module is useful for analysis of layered composite structures using these modelling tools and functionality tailored. Composite Materials Module: A composite material is a heterogeneous material composed of two or more integrated constituents for enhanced structural performance.Chemical Reaction Engineering Module: This Module provides a user interface for creating, inspecting, and editing model equations, kinetic expressions, functions, and variables for chemical systems. ![]() CFD Module: The CFD Module provides a dedicated physics interface for defining models of heat transfer in fluid and solid domains coupled to fluid flow in the fluid domain.These simulations may involve the transport of charged and neutral species, current conduction, fluid flow, heat transfer, and electrochemical reactions in porous electrodes. Battery Design Module: The Battery Design Module models and simulates the fundamental processes in the electrodes and electrolytes of batteries.The multiphysics environment is extended further with several dedicated numerical methods, including the finite element method (FEM), boundary element method (BEM), ray tracing, and discontinuous Galerkin finite element method (dG-FEM). ![]() The Acoustics Module also includes many specialized formulations and material models that can be used for dedicated application areas, like thermoviscous acoustics used in miniature transducers and mobile devices or Biot's equations for modeling poroelastic waves. You can use the specialized features to visualize acoustic fields and build virtual prototypes of devices or components.
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