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Fully Lagrangian Approach of Three-Phase Systems for Debris Bed Formation | samadii/fluid

5 วิว03/01/2024

💦🌑By integrating MPS, DBM, and DEM, you can create a robust numerical framework that can capture the intricate interactions and behaviors of a three-phase system during debris bed formation. A fully Lagrangian approach for three-phase systems is particularly relevant in applications such as nuclear engineering, geotechnical engineering, and environmental science where the formation of debris beds plays a crucial role. 💧💦Interactions between the solid, liquid, and gas phases are crucial in debris bed formation. For example, the drag force exerted by the fluid on the solid particles, buoyancy effects, and interactions between solid particles themselves play a significant role. 📈 The data used is as follows: ✔️MT2: the mixture of 0.92, 1.95, 3.43, 5.72, and 8.01 mm particles (total 136,319EA, 2.5kg) ✔️Non-spherical particles (Sphericity:0.874, SUS304) ✔️Air flow rate: 70lpm (0, 30, 50, 70, and 90lpm) ✔️CUDA v11.6, ✔️Nvidia RTX 4090 📩Get in touch with us to learn more▶support@metariver.kr #cfd #particles #lagrangian #mps #DBM #simulation #cuda #cae #particle #flow #computationalfluiddynamics #metariver #bubble #fluidmechanics #fluiddynamics #multiphysics #flows #sph #cfddem #simulationsoftware #nvidia #fluidflow #couplings #CFDEMcoupling #simulationmodeloftheday #bubblecolumn #gas #aerodynamics #bubbles #sediment #쿠다 #메타리버테크놀러지 #시뮬레이션 #사마디
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samadii/fluid (CFD)
14/14
1
particle-based approaches_ CFD vs. DEM (CUDA)
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particle-based approaches_ CFD vs. DEM (CUDA)

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MPS (Moving Particle Semi-implicit) Simulation Of Tank Sloshing | samadii/fluid
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MPS (Moving Particle Semi-implicit) Simulation Of Tank Sloshing | samadii/fluid

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Sloshing Tank Simulation Using MPS (Moving Particle Semi-implicit) Method | samadii/fluid
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Sloshing Tank Simulation Using MPS (Moving Particle Semi-implicit) Method | samadii/fluid

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Moving Particle Semi-Implicit (MPS) Simulation On GPU | samadii/fluid
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Moving Particle Semi-Implicit (MPS) Simulation On GPU | samadii/fluid

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Lagrangian CFD Simulation  (Particle-based CFD) | samadii/fluid
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Lagrangian CFD Simulation (Particle-based CFD) | samadii/fluid

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2-way coupling CFD+DEM vs. CFD+DBM (Bubble Discrete Element Method) | samadii/fluid
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2-way coupling CFD+DEM vs. CFD+DBM (Bubble Discrete Element Method) | samadii/fluid

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Simulation of EV motor cooling | MPS-FEM coupled method for conjugated heat transfer
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Simulation of EV motor cooling | MPS-FEM coupled method for conjugated heat transfer

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Performance of the MPS (CFD) Method in Gear Lubrication | samadii/fluid
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Performance of the MPS (CFD) Method in Gear Lubrication | samadii/fluid

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Comprehensive Bubble Column Analysis using CFD+DBM 2-Way Coupling Simulation | samadii/fluid
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Comprehensive Bubble Column Analysis using CFD+DBM 2-Way Coupling Simulation | samadii/fluid

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CFD Simulation  Of A Tank Sloshing Phenomena With Baffles | samadii/fluid
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CFD Simulation Of A Tank Sloshing Phenomena With Baffles | samadii/fluid

11 วิว
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Volume Rendering Techniques for Particle-based CFD(MPS) | samadii/fluid
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Volume Rendering Techniques for Particle-based CFD(MPS) | samadii/fluid

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Hot Melt Extrusion (HME) process simulation |  Lagrangian CFD (particle-based CFD)
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Hot Melt Extrusion (HME) process simulation | Lagrangian CFD (particle-based CFD)

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MPS Simulation for Gearbox Optimization | samadii/fluid
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MPS Simulation for Gearbox Optimization | samadii/fluid

4 วิว
14
Fully Lagrangian Approach of Three-Phase Systems for Debris Bed Formation | samadii/fluid
2:01

Fully Lagrangian Approach of Three-Phase Systems for Debris Bed Formation | samadii/fluid

5 วิว

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