Fluent MIXSIM 2.0.2.Linux

  • Size:35MB
  • Language:english
  • Platform:Winxp/Win7
  • Freshtime:2006-09-03
  • Search:Fluent MIXSIM

Description

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MixSim Linux® is a comprehensive analysis tool for complete hydrodynamic simulation of agitated mixing vessels. With an easy-to-use interface, customized with mixing language, users can rapidly create a computer model of many agitated vessels and predict the relevant mixing characteristics. MixSim Linux is used to design, troubleshoot, characterize, verify and help to scale-up agitated mixing tanks and reactors virtually, saving process engineer and equipment designers time and money in physical prototyping.

MixSim Linux’s intelligent geometry and meshing algorithms, combined with a mixing specific graphical presentation of results, enable users to set up CFD simulations of complex mixing tanks in a matter of minutes. MixSim Linux’s coupling to libraries of brand name and generic impeller types and its connection to the unparalleled breadth of physical and chemical models in the FLUENT solver make it the most powerful flow modeling software available for stirred tank mixing applications.

MixSim Linux is designed to bring to engineers a power tool through its easy to use and intuitive interface at no or minimal learning curve. As an application specific tool, it is optimized to help set up complex mixing tanks simulations from geometry description, meshing and solution set up in matter of few minutes. Therefore, it has the flexibility to set up many tank bottom shapes, impeller types, heating coils and plates, baffle shapes without the need to go through any CAD or manual geometry creation steps.

The various steps required to perform a simulation of the mixing vessel are integrated so the users can easily use the software. The steps required to perform a mixing simulation are familiar to the typical process engineer, thereby eliminating the need to be a CAD package expert. In addition, MixSim Linux GUI accesses many proven and well established features of FLUENT computational fluid dynamic solvers, reducing the need to learn a full function CFD program. Examples include access to various turbulence modeling features, non-Newtonian viscosity models such as power law and Carreau. All of the tools typically needed in a general purpose CFD package including simulation procedure and solver controls needed for a complete modeling solution  have been tied together in a single user-friendly environment. The user has access to accurate physical models, as well as automatic preprocessing and powerful graphical visualization tools.  

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