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Rotary Equipment CFD Simulation Training Course Ansys Fluent - Printable Version

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Rotary Equipment CFD Simulation Training Course Ansys Fluent - OneDDL - 11-18-2025

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Free Download Rotary Equipment CFD Simulation Training Course Ansys Fluent
Published 11/2025
MP4 | Video: h264, 1920x1080 | Audio: AAC, 44.1 KHz
Language: English | Size: 2.81 GB | Duration: 3h 12m
Practical CFD simulations for rotary equipment including pumps, mixers, brakes, and electronic cooling with ANSYS Fluent

What you'll learn
Learn to set up and run CFD simulations for rotary equipment using ANSYS Fluent effectively.
Master preprocessing, meshing, and solver settings for rotary and multiphase flow simulations.
Gain skills in post-processing and analyzing flow, heat transfer, and cavitation results.
Validate CFD results by comparing with experimental data and optimize equipment design.
Requirements
The prerequisite for taking this course is a fundamental technical education and a basic understanding of fluid mechanics or fluid dynamics concepts. This foundation helps you grasp CFD principles and use ANSYS Fluent effectively.
Description
This course provides an expansive, comprehensive learning experience in advanced CFD simulation targeting rotary equipment using ANSYS Fluent software. Throughout the course, you will progress from foundational theory to detailed hands-on modeling and analysis of a wide range of rotary systems, including lobe pumps, diaphragm pumps, internal gear pumps, gerotor pumps, mixing tanks, bioreactors agitated by turbines, brake disc heat transfer, electronic engine cooling, and drilling mud separators. Each module introduces the engineering principles, geometry creation, meshing strategies, solver configuration, and simulation settings tailored to the specific machine or process, leveraging real industrial scenarios.You'll master dynamic mesh techniques for moving and deforming boundaries, Eulerian and Discrete Phase multiphase flow simulation for complex liquids and particle suspensions, turbulence models (k-epsilon, k-omega RNG), conjugate heat transfer, and unsteady (transient) analysis in real-world case studies. Step-by-step tutorials guide you in extracting, interpreting, and validating simulation data, including velocity, pressure, temperature, turbulence intensity, cavitation zones, and mixing times, using state-of-the-art ANSYS post-processing tools.Case studies address simulation-driven design improvements, efficiency enhancement, troubleshooting operational issues, and process optimization for industry segments like chemical processing, energy, automotive, and manufacturing. You'll learn best practices in defining boundary conditions, mesh sensitivity studies, algorithm selection, and UDF implementation for advanced customization. Frequent video lectures, workflow demos, and live mentoring ensure understanding and the ability to immediately apply your skills in research or professional contexts.Upon completion, you'll be equipped to model, analyze, and optimize rotary machinery, provide actionable engineering insights, and support innovation and technical development projects in multidisciplinary engineering environments. This course is ideal for engineers, researchers, technical educators, and professionals aiming to advance their CFD expertise and simulation-driven decision-making in rotary equipment applications.
This course is for engineers, researchers, and professionals who want to master rotary equipment CFD simulation using ANSYS Fluent to improve design and performance analysis.
Homepage
https://www.udemy.com/course/rotary-equipment-cfd-simulation-training-course-ansys-fluent/

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