arrow
Return

Efficient same-dimensional implicit time advancement parallel scheme and optimization methods for the iteration parameters using a graphics-processing unit

delete2022-09-28
delete2
PRE
AI
B
Bohao Zhou
黄旭东 cover
黄旭东 (Xudong Huang)
D
Dianfang Bi
K
Ke Zhang *
M
Ming Zhou
DOI:10.1063/5.0107571delete
deleteOriginal
deleteOriginal request for help
deleteShare
deleteSave
Abstract

Abstract

En 中文
Many studies have focused on the acceleration of computational fluid dynamics (CFD) using multicore hardware such as graphics-processing units (GPUs) in the field of parallel computing. In GPU acceleration, CFD parallel granularity generally refers to the point granularity parallelization as a unit of the grid. An implicit time advancement scheme is more efficient and faster than an explicit time advancement scheme for CFD. However, for commonly used implicit schemes, such as the lower-upper symmetric Gauss-Seidel (LUSGS) scheme, the parallel dimensionality is reduced, resulting in a highly time-consuming procedure. In this paper, the data-parallel upper-lower relaxation (DPLUR) scheme based on Jacobi iteration is used and then implemented on a GPU. Numerical experiments are carried out and show that the computing speed of point granularity parallelization using the DPLUR scheme, especially implemented on a GPU, is much higher than that of dimensionality reduction using the LUSGS scheme. Moreover, the influence of different Jacobi inner iteration steps (JIIS) on the convergence time is discussed, and two JIIS optimization algorithms are proposed according to the characteristics of convergence. On the basis of the memory access form, a DPLUR red black (DPRB) scheme with more stable and faster convergence than the conventional DPLUR scheme is developed. Finally, some standard cases are adopted to verify the effectiveness of DPRB schemes with the JIIS optimization algorithm. Published under an exclusive license by AIP Publishing.
Keywords:
GRIDS

Journal

Physics of Fluids cover
Physics of Fluids
IF:
4.3
Papers:
2.9W
Citations:
8.0W

Organization

T
tsinghua university
Scholars:
11.9W
Papers: 10.0W
Citations: 137
Cited Papers

Cited Papers

Evaluation of the humoral immune response induced by vaccination for canine distemper and parvovirus: a pilot study
err2018-11-16
err0
errOAAI
errBeatriz Vila Nova; Eva Cunha; Nuno Sepúlveda; Manuela Oliveira; Berta São Braz; Luis Tavares; Virgílio Almeida; Solange Gil
errShare
errSave
Parallel finite volume method-based fluid flow computations using OpenMP and CUDA applying different schemes
err2021-03-02
err11
PREAI
errAfzal, Asif; Saleel, C. Ahamed; Prashantha, K.; Bhattacharyya, Suvanjan; Sadhikh, Mohammed
errShare
errSave
Replication of HIV-1 envelope protein cytoplasmic domain variants in permissive and restrictive cells
err2019-12-01
err0
errOAAI
errAugust O. Staubus; Ayna Alfadhli; Robin Lid Barklis; Eric Barklis
errShare
errSave
A parallel nonlinear multigrid solver for unsteady incompressible flow simulation on multi-GPU cluster
err2020-08-01
err9
PREAI
errShi, Xiaolei; Agrawal, Tanmay; Lin, Chao-An; Hwang, Feng-Nan; Chiu, Tzu-Hsuan
errShare
errSave
Investigation of extramammary sources of Group B Streptococcus reveals its unusual ecology and epidemiology in camels
err2021-12-03
err0
errOAAI
errDinah Seligsohn; Chiara Crestani; Nduhiu Gitahi; Emelie Lejon Flodin; Erika Chenais; Ruth N. Zadoks
errShare
errSave
Mechanically Interlocked Molecules Assembled by π–π Recognition
err2012-02-28
err0
PREAI
errGokhan Barin; Ali Coskun; Moustafa M. G. Fouda; J. Fraser Stoddart
errShare
errSave
Large calculation of the flow over a hypersonic vehicle using a GPU
err2008-12-01
err167
PREAI
errElsen, Erich; LeGresley, Patrick; Darve, Eric
errShare
errSave
researcher View more