All Stories

  1. Volume conservation issue within SPH models for long-time simulations of violent free-surface flows
  2. A regularized high-order diffusive smoothed particle hydrodynamics scheme without tensile instability
  3. An accurate and robust axisymmetric SPH method based on Riemann solver with applications in ocean engineering
  4. Numerical study on the dissipation mechanisms in sloshing flows induced by violent and high-frequency accelerations. I. Theoretical formulation and numerical investigation
  5. Numerical study on the dissipation mechanisms in sloshing flows induced by violent and high-frequency accelerations. II. Comparison against experimental data
  6. Da Vinci's observation of turbulence: A French-Italian study aiming at numerically reproducing the physics behind one of his drawings, 500 years later
  7. Regimes identification of the viscous flow past an elliptic cylinder for Reynolds number up to 10000
  8. General isotropic micropolar fluid model in smoothed particle hydrodynamics
  9. Smoothed particle hydrodynamics method from a large eddy simulation perspective. Generalization to a quasi-Lagrangian model
  10. A global analysis of a coupled violent vertical sloshing problem using an SPH methodology
  11. Bifurcations and chaos transition of the flow over an airfoil at low Reynolds number varying the angle of attack
  12. Shear-viscosity-independent bulk-viscosity term in smoothed particle hydrodynamics
  13. A consistent approach to particle shifting in the δ-
  14. Viscous flow past a cylinder close to a free surface: Benchmarks with steady, periodic and metastable responses, solved by meshfree and mesh-based schemes
  15. Extreme wave impacts on a wave energy converter: load prediction through a SPH model
  16. A dynamic δ-SPH model: How to get rid of diffusive parameter tuning
  17. Energy balance during generation, propagation and absorption of gravity waves through the δ-LES-SPH model
  18. Multiple bifurcations of the flow over stalled airfoils when changing the Reynolds number
  19. Numerical simulations of the transition from laminar to chaotic behaviour of the planar vortex flow past a circular cylinder
  20. On the filtering of acoustic components in weakly-compressible SPH simulations
  21. SPH energy conservation for fluid–solid interactions
  22. Smoothed particle hydrodynamics method from a large eddy simulation perspective
  23. SPH modelling of viscous flow past a circular cylinder interacting with a free surface
  24. The δplus-SPH model: Simple procedures for a f...
  25. Particle Methods for Viscous Flows: Analogies and Differences Between the SPH and DVH Methods
  26. Low Reynolds Flow Past a Circular Cylinder Close to a Free-Surface With Vertical Motion Dynamics
  27. Detection of Lagrangian Coherent Structures in the SPH framework
  28. Analysis of free-surface flows through energy considerations: Single-phase versus two-phase modeling
  29. Simulating 2D viscous flow around geometries with vertices through the Diffused Vortex Hydrodynamics method
  30. Energy-decomposition analysis for viscous free-surface flows
  31. Computation of flow features and hydrodynamic coefficients around heave plates oscillating near a seabed
  32. The Diffused Vortex Hydrodynamics Method
  33. Energy balance in the δ-SPH scheme
  34. Numerical simulation of 2D-vorticity dynamics using particle methods
  35. High Froude Number Viscous Flow Past a Circular Cylinder
  36. Prediction of energy losses in water impacts using incompressible and weakly compressible models
  37. A measure of spatial disorder in particle methods
  38. Numerical Investigation of the Flow Features Around Heave Plates Oscillating Close to a Free Surface or Seabed
  39. Viscous Flow Past a Circular Cylinder Below a Free Surface
  40. Mechanical energy dissipation induced by sloshing and wave breaking in a fully coupled angular motion system. I. Theoretical formulation and numerical investigation
  41. Mechanical energy dissipation induced by sloshing and wave breaking in a fully coupled angular motion system. II. Experimental investigation
  42. Nonlinear water wave interaction with floating bodies in SPH
  43. Viscous bubbly flows simulation with an interface SPH model
  44. An accurate SPH modeling of viscous flows around bodies at low and moderate Reynolds numbers
  45. A critical investigation of smoothed particle hydrodynamics applied to problems with free‐surfaces
  46. A Classification of Shallow Water Resonant Sloshing in a Rectangular Tank
  47. SPH Multiphase Simulation of Bubbly Flows: Towards Oil and Water Separation
  48. Smoothed Particle Hydrodynamics: Benchmarking on Selected Test Cases Within the NextMuSE Initiative
  49. Numerical and Experimental Investigation of Nonlinear Shallow Water Sloshing
  50. The damping of viscous gravity waves
  51. Smoothed-particle-hydrodynamics modeling of dissipation mechanisms in gravity waves
  52. Numerical diffusive terms in weakly-compressible SPH schemes
  53. Conservation of circulation in SPH for 2D free‐surface flows
  54. Study of ship wave breaking patterns using 3D parallel SPH simulations
  55. The fluid mechanics of splashing bow waves on ships: A hybrid BEM–SPH analysis
  56. Particle packing algorithm for SPH schemes
  57. Simulating 2D open-channel flows through an SPH model
  58. Two-dimensional modal method for shallow-water sloshing in rectangular basins
  59. A 2D+t SPH model to study the breaking wave pattern generated by fast ships
  60. Publisher’s Note: Theoretical analysis and numerical verification of the consistency of viscous smoothed-particle-hydrodynamics formulations in simulating free-surface flows [Phys. Rev. E84, 026705 (2011)]
  61. Theoretical analysis and numerical verification of the consistency of viscous smoothed-particle-hydrodynamics formulations in simulating free-surface flows
  62. Theoretical Analysis of the No-Slip Boundary Condition Enforcement in SPH Methods
  63. Propagation of gravity waves through an SPH scheme with numerical diffusive terms
  64. δ-SPH model for simulating violent impact flows
  65. Next-generation Multi-mechanics Simulation Engine in a Highly Interactive Environment
  66. Fast free-surface detection and level-set function definition in SPH solvers
  67. Free-surface flows solved by means of SPH schemes with numerical diffusive terms
  68. A study of violent sloshing wave impacts using an improved SPH method
  69. An Hamiltonian interface SPH formulation for multi-fluid and free surface flows
  70. A simple procedure to improve the pressure evaluation in hydrodynamic context using the SPH
  71. Theoretical considerations on the free-surface role in the smoothed-particle-hydrodynamics model
  72. A set of canonical problems in sloshing, Part I: Pressure field in forced roll—comparison between experimental results and SPH
  73. Gridless simulations of splashing processes and near-shore bore propagation
  74. Pipe-Soil Interaction: An Evaluation of a Numerical Model
  75. Numerical simulation of interfacial flows by smoothed particle hydrodynamics