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Keyword [immersed boundary method]
Result: 21 - 40 | Page: 2 of 6
21. A Finite Volume Immersed Boundary Method And Its Application
22. Three-dimensional Numerical Simulation Of Flow Around A Circular Cylinder And Vortex-induced Vibration
23. Numerical Methods Based On LBM For Two-phase Flows With Surfactant And Two Kinds Of Complex FSI Problems
24. Study On Numerical Simulation Methods For Hydrodynamics Of Small Scale Objects In Ocean Engineering
25. Numerical Simulation Of The Flow With Moving Contact Line Involving Complex Geometry Substrate And Fluid-structure Interaction
26. Numerical Simulation Of The Viscous Two-Phase Flow Based On VOF And IBM
27. Numerical Simulation Of Red Blood Cell Motion And Deformation Based On Level-set Method
28. Finite Difference Weighted Essentially Non-oscillatory Schemes With Ghost Cell Immersed Boundary Method On Structured Meshes
29. The Application Of Finite Volume Weighted Essentially Non-oscillatory Scheme With Ghost Cell Immersed Boundary Method On Structured Meshes
30. Numerical Simulation Of Self-propelled Of "C"Type Swimming Fish Using The Immersed Boundary Method
31. Study On The Interaction Between The Rigid Body And Fluid Using Projected Immersed Boundary Method
32. The Numerical Heat Transfer Study For Temperature-Sensitive Ferrofluids Based On LBM
33. Coupled Model And Numerical Simulation Of Sedimentation Circular Particles In The Viscous Flows Based On LBM-IBM-DEM
34. Study On Flow-induced Vibrations Of Two Tandem-arranged Circular Cylinders In Larminar Flow With Low Reynolds Number
35. A Numerical Study On Flow-Induced Vibration Of Flexible Structures
36. Numerical Investigation Of Fluid And Flexible-thin-plate Interaction
37. Study Of A Discrete Forcing Finite-volume Immersed Boundary Method
38. Direct Numerical Simulation Study Of Flow Characteristcs And Drag Force In Gas-Solid Fluidized Beds
39. Numerical Investigation Of Hydrodynamic Schooling Of Bio-Inspired Self-Propulsive Flexible Plates
40. Numerical Investigation Of Flow Past Circular Cylinders With Rotation And Oscillation By The DFD Method
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