A space-time parallel algorithm with adaptive mesh refinement for computational fluid dynamics

被引:7
|
作者
Christopher, Joshua [1 ]
Falgout, Robert D. [2 ]
Schroder, Jacob B. [3 ]
Guzik, Stephen M. [1 ]
Gao, Xinfeng [1 ]
机构
[1] Colorado State Univ, CFD & Prop Lab, Ft Collins, CO 80523 USA
[2] Lawrence Livermore Natl Lab, Ctr Appl Sci Comp, Livermore, CA USA
[3] Univ New Mexico, Dept Math & Stat, Albuquerque, NM 87131 USA
关键词
Time-parallel; Mesh parallel-in-time; Adaptivity; Multigrid; MGRIT; High-order CFD; Finite-volume; FINITE-VOLUME METHOD; LARGE-EDDY SIMULATION; FLOWS; ADVECTION; EQUATIONS;
D O I
10.1007/s00791-020-00334-1
中图分类号
O1 [数学];
学科分类号
0701 ; 070101 ;
摘要
This paper describes a space-time parallel algorithm with space-time adaptivemesh refinement (AMR). AMR with subcycling is added to multigrid reduction-in-time (MGRIT) in order to provide solution efficient adaptive grids with a reduction in work performed on coarser grids. This algorithm is achieved by integrating two software libraries: XBraid (Parallel time integration with multigrid. https://computation.llnl.gov/projects/parallel-timeintegration- multigrid) and Chombo (Chombo software package for AMR applications-design document, 2014). The former is a parallel time integration library using multigrid and the latter is a massively parallel structured AMR library. Employing this adaptive space-time parallel algorithm is Chord (Comput Fluids 123:202-217, 2015), a computational fluid dynamics (CFD) application code for solving compressible fluid dynamics problems. For the same solution accuracy, speedups are demonstrated from the use of space-time parallelization over the time-sequential integration on Couette flow and Stokes' second problem. On a transient Couette flow case, at least a 1.5x speedup is achieved, and with a time periodic problem, a speedup of up to 13.7x over the time-sequential case is obtained. In both cases, the speedup is achieved by adding processors and exploring additional parallelization in time. The numerical experiments show the algorithm is promising for CFD applications that can take advantage of the time parallelism. Future work will focus on improving the parallel performance and providing more tests with complex fluid dynamics to demonstrate the full potential of the algorithm.
引用
收藏
页数:20
相关论文
共 50 条
  • [21] SPACE-TIME FLUID-STRUCTURE INTERACTION METHODS
    Takizawa, Kenji
    Tezduyar, Tayfun E.
    MATHEMATICAL MODELS & METHODS IN APPLIED SCIENCES, 2012, 22
  • [22] Space-time VMS computational flow analysis with isogeometric discretization and a general-purpose NURBS mesh generation method
    Otoguro, Yuto
    Takizawa, Kenji
    Tezduyar, Tayfun E.
    COMPUTERS & FLUIDS, 2017, 158 : 189 - 200
  • [23] Space-time adaptive numerical methods for geophysical applications
    Castro, C. E.
    Kaeser, M.
    Toro, E. F.
    PHILOSOPHICAL TRANSACTIONS OF THE ROYAL SOCIETY A-MATHEMATICAL PHYSICAL AND ENGINEERING SCIENCES, 2009, 367 (1907): : 4613 - 4631
  • [24] Combination of an Adaptive Multilevel SQP Method and a Space-Time Adaptive PDAE Solver for Optimal Control Problems
    Clever, Debora
    Lang, Jens
    Ulbrich, Stefan
    Ziems, J. Carsten
    ICCS 2010 - INTERNATIONAL CONFERENCE ON COMPUTATIONAL SCIENCE, PROCEEDINGS, 2010, 1 (01): : 1429 - 1437
  • [25] A finite volume parallel adaptive mesh refinement method for solid-liquid phase change
    Kaaks, Bouke Johannes
    Rohde, Martin
    Kloosterman, Jan-Leen
    Lathouwers, Danny
    NUMERICAL HEAT TRANSFER PART B-FUNDAMENTALS, 2024,
  • [26] A space-time multilevel method for molecular dynamics simulations
    Waisman, Haim
    Fish, Jacob
    COMPUTER METHODS IN APPLIED MECHANICS AND ENGINEERING, 2006, 195 (44-47) : 6542 - 6559
  • [27] An adaptive mesh refinement algorithm for compressible two-phase flow in porous media
    Pau, George Shu Heng
    Bell, John B.
    Almgren, Ann S.
    Fagnan, Kirsten M.
    Lijewski, Michael J.
    COMPUTATIONAL GEOSCIENCES, 2012, 16 (03) : 577 - 592
  • [28] Parallel Algorithms for Using Lagrangian Markers in Immersed Boundary Method with Adaptive Mesh Refinement in FLASH
    Mohapatra, Prateeti
    Dubey, Anshu
    Daley, Christopher
    Vanella, Marcos
    Balaras, Elias
    2013 25TH INTERNATIONAL SYMPOSIUM ON COMPUTER ARCHITECTURE AND HIGH PERFORMANCE COMPUTING (SBAC-PAD), 2013, : 214 - 220
  • [29] Solution adaptive refinement of cut-cell Cartesian meshes can improve FDA nozzle computational fluid dynamics efficiency
    Pewowaruk, Ryan
    Li, Yanheng
    Rowinski, David
    Roldan-Alzate, Alejandro
    INTERNATIONAL JOURNAL FOR NUMERICAL METHODS IN BIOMEDICAL ENGINEERING, 2021, 37 (04)
  • [30] A fourth-order Cartesian local mesh refinement method for the computational fluid dynamics of physiological flow in multi-generation branched vessels
    Miki, Takahito
    Imai, Yohsuke
    Ishikawa, Takuji
    Wada, Shigeo
    Aoki, Takayuki
    Yamaguchi, Takami
    INTERNATIONAL JOURNAL FOR NUMERICAL METHODS IN BIOMEDICAL ENGINEERING, 2011, 27 (03) : 424 - 435