• 10 Citations
20162019
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Research Output 2016 2019

  • 10 Citations
  • 3 Article
  • 2 Chapter
  • 1 Phd Thesis 1 (Research TU/e / Graduation TU/e)
1 Citation (Scopus)

Binary-fluid-solid interaction based on the Navier-Stokes-Korteweg equations

Shokrpour Roudbari, M. & van Brummelen, E. H., 2 Apr 2019, In : Mathematical Models and Methods in Applied Sciences. 29, 5, p. 995-1036

Research output: Contribution to journalArticleAcademicpeer-review

Fluid-solid Interaction
Navier-Stokes
Binary
Fluid
Fluids

Phase-field methods for binary-fluid flows and binary-fluid-solid interaction

Shokrpour Roudbari, M., 14 Jun 2019, Eindhoven: Technische Universiteit Eindhoven. 129 p.

Research output: ThesisPhd Thesis 1 (Research TU/e / Graduation TU/e)Academic

Open Access
File
2 Citations (Scopus)

Diffuse-interface two-phase flow models with different densities: A new quasi-incompressible form and a linear energy-stable method

Shokrpour Roudbari, M., Şimşek, G., van Brummelen, E. H. & van der Zee, K. G., 1 Apr 2018, In : Mathematical Models and Methods in Applied Sciences. 28, 4, p. 733-770 38 p.

Research output: Contribution to journalArticleAcademicpeer-review

Diffuse Interface
Two-phase Flow
Two phase flow
Energy
Mixture Theory

Binary-fluid–solid interaction based on the Navier–Stokes–Cahn–Hilliard Equations

van Brummelen, E. H., Shokrpour Roudbari, M., Simsek - Senel, G. & van der Zee, K. G., 2017, Fluid-structure interaction: modeling, adaptive discretizations and solvers. Frei, S., Holm, B., Richter, T., Wick, T. & Yang, H. (eds.). Walter de Gruyter GmbH, p. 283-323 41 p. (Radon Series on Computational and Applied Mathematics; vol. 20)

Research output: Chapter in Book/Report/Conference proceedingChapterAcademicpeer-review

fluid-solid interactions
binary fluids
traction
fluids
interfacial tension
2 Citations (Scopus)

A multiscale diffuse-interface model for two-phase flow in porous media

Shokrpour Roudbari, M., van Brummelen, E. H. & Verhoosel, C. V., 15 Dec 2016, In : Computers & Fluids. 141, p. 212-222 11 p.

Research output: Contribution to journalArticleAcademicpeer-review

Two phase flow
Porous materials
Capillarity
Equations of motion
Wetting