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Advanced thermodynamics software

To increase operational efficiency, Multiflash® , a comprehensive PVT (Pressure, Volume, and Temperature) modeling and physical properties software, empowers engineers to predict the phase behavior and transport properties of complex fluids in oil and gas, refining, petrochemical & polymer, energy, and process industries.

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Thermodynamics and Physical Properties for Net Zero

Fluid modeling is carried out at various stages in design and operations. However, the lack of appropriate models and consistency across disciplines often causes delays, uncertainties, and costly mistakes. While this situation leads to excessive CAPEX/OPEX, it may also cause health and safety hazards and catastrophic damages to facilities.

Multiflash supports your organisation along its digital transformation and transition journey toward net zero by:

  • Accurately predicting phase behavior increasing operational efficiency.
  • Seamlessly integrating with other modeling tools providing effective collaboration.

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Multiflash PVT Modeling Software Benefits

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Watch how Multiflash predicts the behaviour and properties of complex fluids for optimal design and operations.

Behnam Salimi - Profile Picture

Behnam Salimi

Product Manager - PVT Technology

Our expert on Multiflash

"Over the 30+ years of its development and market presence, Multiflash has established itself as one of the standards in PVT modeling across the process industry. The specialization and accuracy of predictions in applications such as flow assurance or process modeling have traditionally driven the evolution of the software. More recently, energy transition and digitalization have started to cause a shift in the focus of oil & gas, and process industries. Multiflash is at the forefront of this transition, with new applications and models, as well as innovative and more performative ways to access its capabilities across disciplines and platforms, to provide engineers with a truly unique solution for their needs of accurate predictions of phase behavior and physical properties."

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