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contributor authorPark, Taehyo
contributor authorLi, Shengjie
contributor authorLee, Mina
contributor authorTak, Moonho
date accessioned2017-11-25T07:16:12Z
date available2017-11-25T07:16:12Z
date copyright2017/7/2
date issued2017
identifier issn0094-4289
identifier othermats_139_02_021010.pdf
identifier urihttp://138.201.223.254:8080/yetl1/handle/yetl/4233882
description abstractNowadays, the numerical method has become a very important approach for solving complex problems in engineering and science. Some grid-based methods such as the finite difference method (FDM) and finite element method (FEM) have already been widely applied to various areas; however, they still suffer from inherent difficulties which limit their applications to many problems. Therefore, a strong interest is focused on the meshfree methods such as smoothed particle hydrodynamics (SPH) to simulate fluid flow recently due to the advantages in dealing with some complicated problems. In the SPH method, a great number of particles will be used because the whole domain is represented by a set of arbitrarily distributed particles. To improve the numerical efficiency, parallelization using message-passing interface (MPI) is applied to the problems with the large computational domain. In parallel computing, the whole domain is decomposed by the parallel method for continuity of subdomain boundary under the single instruction multiple data (SIMD) and also based on the procedure of the SPH computations. In this work, a new scheme of parallel computing is employed into the SPH method to analyze SPH particle fluid. In this scheme, the whole domain is decomposed into subdomains under the SIMD process and it composes the boundary conditions to the interface particles which will improve the detection of neighbor particles near the boundary. With the method of parallel computing, the SPH method is to be more flexible and perform better.
publisherThe American Society of Mechanical Engineers (ASME)
titleA Simulation of Domain Decomposition Method for Smoothed Particle Hydrodynamics
typeJournal Paper
journal volume139
journal issue2
journal titleJournal of Engineering Materials and Technology
identifier doi10.1115/1.4035486
journal fristpage21010
journal lastpage021010-7
treeJournal of Engineering Materials and Technology:;2017:;volume( 139 ):;issue: 002
contenttypeFulltext


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