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FluidFlow3 is one complete product. The activation process turns on the software modules, calculation capability and network licence manager from the full product. The versatility of the software means you can be working on a sprinkler system, or a mineral process plant with slurry flows, or a vapour collection system all from within the same environment.


We have the capability to adapt to your needs, find out more information about the modules below:


Liquids, Incompressible Fluid Flow

  • Engineers using FluidFlow3 can determine the pressure, flow, temperature, and phase state at any point within their pipe systems. Any type and any size of piping system can be modelled. Real piping systems often contain many different types of components and fittings.
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Gas, Compressible Flow

  • When a gas flows in a pipe network the gas density, temperature and velocity change as the fluid flows through the network.
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Two Phase Liquid-Gas Flow

  • The two phase flow module allows two phase liquid-gas calculations to be accomplished. Two phase flow occurs in many industrial processes. Examples are petroleum, chemical, nuclear, refrigeration, space, and geothermal industries.
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Settling Slurries

  • Settling slurries comprise a carrier fluid conveying solid particles. This type of flow has extensive applications in the mining and mineral processing industries, where the design of pumped systems must take into account the effect of solids on pipe friction loss and pump performance.
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Non-Newtonian, Non-Settling Slurry Flow

  • A non-Newtonian fluid is a liquid whose flow properties are not described by a single constant value of viscosity. Examples of non-Newtonian fluids are: polymer solutions, starch suspensions, paint, blood, food products, and mining suspensions of densely packed particles.
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Heat Transfer

  • Heat transfer capabilities are included as standard within FluidFlow3.
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Dynamic Analysis & Scripting

  • Scripting can be an effective tool when you are ready to expand your design capabilities. Considering design scenarios, design optimisation, safety and operating studies are an essential part of achieving quality, well designed flow systems.
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