Industry practitioners recognize the limitations of RANS and have been looking for better solutions for more detailed insights. Check out this validation study of one such solution: the lattice-Boltzmann LES approach. https://t.co/DA1uns0z2T
The lattice-Boltzmann LES approach has been found to be applicable and reliable for more detailed insights into flow patterns for #biopharma mixing time simulations. Check out this study to see how it compares to RANS simulations and 4D particle models. https://t.co/DA1uns0z2T
From specialized software developer to global software company: M-Star is continuing to mature. We’re thrilled to be working with CAD-IT, a premier provider of Industry 4.0 software solutions. Learn more about our strategic partnership: https://t.co/bFjYn9noYE
Experiments are necessary to build #DigitalTwins. But once the models are developed, they offer immense value: output reproducibility, time and resource scalability, and process applicability (all at a much lower cost). See how AbbVie made it happen: https://t.co/qYmeQcK0Dm
With M-Star, you're not just generating high resolution, photo-realistic simulations (although that part is definitely really cool). Most importantly, you're simulating and optimizing real #HVAC and climate control processes. See the results: https://t.co/jWjX7x0sPC #CFDsoftware
💊 Tablet Dissolution Modeling 💊
This simulation had about 200,000,000 grid points and advanced at about 1.6 billion lattice updates per second on two GPUs. The vessel is about 40 cm in diameter and the total simulation compute time was about a day.
Source: @MStarCFD
Did you hear about our recent reselling agreement with CAD-IT? Now, we are more equipped to support research scientists across Asia. Learn more: https://t.co/bFjYn9noYE
An awesome and insightful #HVAC simulation - brought to you by M-Star CFD.
M-Star allows engineers to visualize problems and optimize #HVAC system designs without having to install or build a physical prototype - fast, accurately, and cost-effectively. https://t.co/jWjX7wIRr2
⚡HVAC simulation using @MStarCFD⚡
There are a couple of views showing (i) the overall response of the room, (ii) the dynamic response of the sensing probe and the controller, and (iii) a close-up of the flow near the workers.
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Where literature correlations, experiments and numerical modeling fall short, #CFDsoftware excels. @AbbVie knows this well. See how they used M-Star CFD to predict real-time fluid mechanics with a fidelity that rivals experimental data: https://t.co/qYmeQcK0Dm
We’re excited by the rapid growth we’re seeing in Asia for M-Star CFD! Our recent strategic partnership with CAD-IT will help us provide top-level support to research scientists across Asia. Learn more: https://t.co/bFjYn9noYE
The lattice-Boltzmann LES approach for #biopharma equipment characterization is promising - but still in need of literature validation. That’s what this research (with @Boehringer & the Institute of Multiphase Flows) aims to resolve. One study at a time. https://t.co/DA1uns0z2T
Pharmaceutical companies like @AbbVie face unique mixing challenges in the manufacturing process, causing significant processing and scale-up issues. That's why AbbVie turned to a hybrid approach - with M-Star CFD at the center. Learn more: https://t.co/qYmeQcK0Dm
"We have the opportunity to learn something when the experiment fails ... and that’s where we can dig deeper. And that’s where a tool like #CFD can be helpful.” – Aaron Sarafinas on last week's episode of #theCFDmixtape. Catch up here! https://t.co/itQtueOx9n
⚡Lattice Boltzmann – CFD for HVAC⚡
This is a fully transient solution to the N-S and advection-diffusion equations with over 50+ million grid points💻
Source: @MStarCFD
🧠 Free Science Community: https://t.co/MiAFOS1Q0B
#hvac#fluidmechanics#fluidflow#lbm#cfd#simulation
⚡Oxygen Transport Across Free Surfaces⚡
This video shows oxygen transport across free surfaces in agitated vessels. It's interesting to quantify how oxygen flux across the free surface compares to oxygen flux into the liquid from sparged bubbles.
Source: @MStarCFD
⚡Particle Dissolution Physics⚡
This simulation combines a transient solution to the incompressible N-S equations with coupled DEM solution to model particle-particle interactions (Hertz contact).
# of Particles: 150,000
# of grid points: 5 million
Source: @MStarCFD
With M-Star, @Pfizer built #DigitalTwins to perform laboratory experiments on a computer, an approach that proved to accelerate the speed of manufacturing innovation and minimize the scope of the required supporting experimental studies. Learn more: https://t.co/ZZSxsbgWJj
“The ability to understand what you're expecting out of the tool helps you inform whether or not you're getting reasonable answers.” – Eric Janz on last week's #theCFDmixtape. Missed it? Listen here! https://t.co/lWmH5ZW99g