Cahn-Hilliard Navier-Stokes simulations for marine free-surface flows

被引:0
|
作者
Niklas Kühl
Michael Hinze
Thomas Rung
机构
[1] Hamburg University of Technology,Institute for Fluid Dynamics and Ship Theory
[2] Universität Koblenz-Landau,Department of Mathematics
关键词
Cahn-Hilliard Navier-Stokes (CH-NS); Volume-of-Fluid (VoF); free-surface flow; quasi-steady simulation; CFL independence;
D O I
暂无
中图分类号
学科分类号
摘要
The paper is devoted to the simulation of maritime two-phase flows of air and water. Emphasis is put on an extension of the classical Volume-of-Fluid (VoF) method by a diffusive contribution derived from a Cahn-Hilliard (CH) model and its benefits for simulating immiscible, incompressible two-phase flows. Such flows are predominantly simulated with implicit VoF schemes, which mostly employ heuristic downwind-biased approximations for the concentration transport to mimic a sharp interface. This strategy introduces a severe time step restriction and requires pseudo time-stepping of steady flows. Our overall goal is a sound description of the free-surface region that alleviates artificial time-step restrictions, supports an efficient and robust upwind-based approximation framework, and inherently includes surface tension effects when needed. The Cahn-Hilliard Navier-Stokes (CH-NS) system is verified for an analytical Couette-flow example and the bubble formation under the influence of surface tension forces. 2D validation examples are concerned with laminar standing waves reaching from gravity to capillary scale as well as a submerged hydrofoil flow. The final application refers to the 3D flow around an experimentally investigated container vessel at fixed floatation for Re = 1.4 × 107 and Fn = 0.26. Results are compared with data obtained from VoF approaches, supplemented by analytical solutions and measurements. The study indicates the superior efficiency, resharpening capability, and wider predictive realm of the CH-based extension for free-surface flows with a confined spatial range of interface Courant numbers.
引用
收藏
页码:274 / 290
页数:16
相关论文
共 50 条
  • [41] Computational method for Navier-Stokes equations accompanied by free-surface deformation
    Ushijima, S
    Nezu, I
    Sanjou, M
    PROCEEDINGS OF THE TWELFTH (2002) INTERNATIONAL OFFSHORE AND POLAR ENGINEERING CONFERENCE, VOL 3, 2002, : 233 - 239
  • [42] Efficient numerical solution of steady free-surface Navier-Stokes flow
    van Brummelen, EH
    Raven, HC
    Koren, B
    JOURNAL OF COMPUTATIONAL PHYSICS, 2001, 174 (01) : 120 - 137
  • [44] SMALL-TIME EXISTENCE FOR THE NAVIER-STOKES EQUATIONS WITH A FREE-SURFACE
    ALLAIN, G
    APPLIED MATHEMATICS AND OPTIMIZATION, 1987, 16 (01): : 37 - 50
  • [45] Navier-Stokes numerical algorithms for free-surface flow computations: An overview
    Prosperetti, A
    DROP-SURFACE INTERACTIONS, 2002, (456): : 237 - 257
  • [46] Cahn–Hilliard/Navier–Stokes Model for the Simulation of Three-Phase Flows
    F. Boyer
    C. Lapuerta
    S. Minjeaud
    B. Piar
    M. Quintard
    Transport in Porous Media, 2010, 82 : 463 - 483
  • [47] Comparison of energy stable simulation of moving contact line problems using a thermodynamically consistent Cahn-Hilliard Navier-Stokes model
    Bonart, Henning
    Kahle, Christian
    Repke, Jens-Uwe
    JOURNAL OF COMPUTATIONAL PHYSICS, 2019, 399
  • [48] Entropy-stable discontinuous Galerkin approximation with summation-by-parts property for the incompressible Navier-Stokes/Cahn-Hilliard system
    Manzanero, Juan
    Rubio, Gonzalo
    Kopriva, David A.
    Ferrer, Esteban
    Valero, Eusebio
    JOURNAL OF COMPUTATIONAL PHYSICS, 2020, 408
  • [49] Uniform H2-regularity of solution for the 2D Navier-Stokes/Cahn-Hilliard phase field model
    He, Yinnian
    Feng, Xinlong
    JOURNAL OF MATHEMATICAL ANALYSIS AND APPLICATIONS, 2016, 441 (02) : 815 - 829
  • [50] Cahn-Hilliard equations on an evolving surface
    Caetano, D.
    Elliott, C. M.
    EUROPEAN JOURNAL OF APPLIED MATHEMATICS, 2021, 32 (05) : 937 - 1000