Optimizing Flow and Mixing Analyses in Mixing Tanks with Ansys Simulation Technologies [Global]
In this webinar, we present a series of case studies that demonstrate the powerful modeling capabilities of Ansys simulation technologies, including Ansys Fluent and Ansys Rocky, for analyzing and optimizing flow behavior and mixing performance. Various modeling approaches are explored to capture the complex physical phenomena involved in mixing, such as turbulence, multiphase interactions, and particle dynamics.
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Speaker
Supitcha
Coming Soon
Webinar is in ENGLISH LANGUAGE
ABSTRACT
Efficient fluid mixing is a key factor in numerous industrial processes, including chemical, petrochemical, pharmaceutical, and food production. Understanding the behavior of these processes is crucial for reactor design, scale-up, optimization, and troubleshooting.
In this webinar, we present a series of case studies that demonstrate the powerful modeling capabilities of Ansys simulation technologies, including Ansys Fluent and Ansys Rocky, for analyzing and optimizing flow behavior and mixing performance. Various modeling approaches are explored to capture the complex physical phenomena involved in mixing, such as turbulence, multiphase interactions, and particle dynamics. Ansys simulations have long been validated for predicting and visualizing key mixing characteristics such as homogeneity, blend time, dead zones, particle dissolution, free-surface sloshing, vortex formation, and air entrainment, which helping engineers optimize processes with confidence.
TARGET AUDIENCE
This webinar is designed for engineers, researchers, and technical professionals involved in mixing and reactor design across industries such as chemical, petrochemical, pharmaceutical, and food processing.
R&D and scale-up teams
Process engineers
Engineering managers
Academic researchers
AGENDA
Introduction to Significant Challenges Exist to Operate Mixing Equipment
Overview of Ansys Simulation Technologies
Modeling Approaches for Mixing Tanks
Simulation Best Practices for Mixing Equipment and Case Studies
Scale up analysis
Single Phase Mixing Systems
Gas-Liquid Systems & Bioreactors
Solid Dissolution (Solid–Liquid Systems)
Powder Dispersion (Solid–Solid Systems)
Democratization and System-Level Modeling
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