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Particle in Cell Finite Element Validation and Verification Methods

2020 IEEE International Symposium on Antennas and Propagation and North American Radio Science Meeting, 2020
Particle in cell codes are used extensively to understand plasma physics and to design devices that exploit these physics. More recent needs (say novel table top accelerators) have given impetus to development of the next generation plasma physics codes that have better fidelity. But despite this need, it is difficult to validate any code.
S. O'Connor   +2 more
openaire   +1 more source

Bridging Scale Particle and Finite Element Methods

2006
We summarize the strengths and limitations of currently available multiple-scale techniques, where the emphasis is made on the latest prospective approaches, such as the bridging scale method, multiscale boundary conditions, and multiscale fluidics. Example problems, in which multiple-scale simulation methods yield equivalent results to full atomistic ...
Wing Kam Liu   +4 more
openaire   +1 more source

Moving particle finite element method with global smoothness

International Journal for Numerical Methods in Engineering, 2004
AbstractWe describe a new version of the moving particle finite element method (MPFEM) that provides solutions within a C0 finite element framework. The finite elements determine the weighting for the moving partition of unity. A concept of ‘General Shape Function’ is proposed which extends regular finite element shape functions to a larger domain ...
Wing Kam Liu, Ted Belytschko
exaly   +2 more sources

A hybrid particle-finite element method for impact dynamics

Nuclear Engineering and Design, 2011
Abstract An attachment algorithm for the coupling of smoothed particle hydrodynamics (SPH) and finite element method (FEM) is proposed to take advantage of the best properties of both methods. In the SPH-FEM attachment algorithm, SPH particles are attached to finite element nodes in the coupling interface. Any FE node that is in the support domain of
Zhichun Zhang, Hongfu Qiang
openaire   +1 more source

Dynamic simulation of drops by the particle finite element method

2021
Liquid drop dynamics on solid surfaces play an important role both in nature and engineered applications. The prediction of drop spreading and/or sliding motions has far-reaching implications in many fields of application, including microfluidics, phase change applications, or coating technology.
openaire   +2 more sources

Coupling of smooth particle hydrodynamics with the finite element method

Nuclear Engineering and Design, 1994
Abstract A gridless technique called smooth particle hydrodynamics (SPH) has been coupled with the transient dynamics finite element code pronto . In this paper, a new weighted residual derivation for the SPH method will be presented, and the methods used to embed SPH within pronto will be outlined.
S.W. Attaway   +2 more
openaire   +1 more source

A study of compaction of composite particles by multi-particle finite element method

Composites Science and Technology, 2009
We study the compaction of composite mixture of soft and hard micro-/nano-size particles using multi-particle finite element method. In this method, each particle is fully discretized into finite element mesh. Local non-uniform contact deformation and non-uniformity stress chains transmitted through the composite are well illustrated.
exaly   +2 more sources

Finite element-particle method calculation of EHD plumes

Annual Report Conference on Electrical Insulation and Dielectric Phenomena, 2003
We use the superparticle technique mixed with finite element methods to study the transient and stationary behavior of EHD flows. Calculations show that the technique is suitable to study EHD flows. We have been able to reproduce fairly well the particle distribution and flow pattern for both transient and steady EHD plumes.
P.A. Vazquez   +3 more
openaire   +1 more source

On the Treatment of Plastic Deformation in the Particle Finite Element Method

PAMM, 2018
AbstractThe particle finite element method (PFEM) combines the benefits of discrete modeling techniques and approaches based on continuum mechanics. It provides a convenient tool to deal with the problem of large configurational change, such as metal cutting, in which nonlinear plasticity plays a key role [1].
Xialong Ye, Ralf Müller
openaire   +1 more source

Particle Finite Element Methods in Solid Mechanics Problems

2007
The paper examines the possibilities of extending the Particle finite element methods (PFEM), which have been successfully applied in fluid mechanics, to solid mechanics problems. After a review of the fundamentals of the method, their specific features in solid mechanics are presented.
J. Oliver   +4 more
openaire   +1 more source

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