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Radiative signatures of the relativistic Kelvin-Helmholtz instability
We present a particle-in-cell simulation of the relativistic Kelvin-Helmholtz Instability (KHI)
that for the first time delivers angularly resolved radiation spectra of the particle dynamics …
that for the first time delivers angularly resolved radiation spectra of the particle dynamics …
Study of ship wave breaking patterns using 3D parallel SPH simulations
An analysis of the 3D wave pattern generated by a ship in stationary forward motion has
been performed with a specific focus on the bow breaking wave. For this purpose a novel 3D …
been performed with a specific focus on the bow breaking wave. For this purpose a novel 3D …
Large eddy simulation of wind turbine wakes
We present the coupling of a vortex particle-mesh method with immersed lifting lines for the
Large Eddy Simulation of wind turbine wakes. The method relies on the Lagrangian …
Large Eddy Simulation of wind turbine wakes. The method relies on the Lagrangian …
An immersed lifting and dragging line model for the vortex particle-mesh method
The numerical study of the wake of full-scale slender devices such as aircraft wings and
wind turbine blades requires high-fidelity large eddy simulation tools. The broad spectrum of …
wind turbine blades requires high-fidelity large eddy simulation tools. The broad spectrum of …
Abstractions and middleware for petascale computing and beyond
IF Sbalzarini - … Integration Advancements in Distributed Systems and …, 2012 - igi-global.com
As high-performance computing moves to the petascale and beyond, a number of
algorithmic and software challenges need to be addressed. This paper reviews the main …
algorithmic and software challenges need to be addressed. This paper reviews the main …
FLUPS: A fourier-based library of unbounded poisson solvers
A Fourier-based library of unbounded Poisson solvers (FLUPS) for 2D and 3D
homogeneous distributed grids is presented. It is designed to handle every possible …
homogeneous distributed grids is presented. It is designed to handle every possible …
A velocity-vorticity method for highly viscous 3d flows with application to digital rock physics
L Hume, P Poncet - Journal of Computational Physics, 2021 - Elsevier
In this article, we present a numerical iterative method for the solution of internal viscous and
incompressible flows in real porous three-dimensional bodies at their pore scale. We use …
incompressible flows in real porous three-dimensional bodies at their pore scale. We use …
Smoothed particle hydrodynamics simulation of biphasic soft tissue and its medical applications
Modeling the coupled fluid and elastic mechanics of blood perfused soft tissues is important
for medical applications. In particular, the current study aims to capture the effect of tissue …
for medical applications. In particular, the current study aims to capture the effect of tissue …
Toward an Object‐Oriented Core of the PPM Library
As high‐performance computing (HPC) machines become increasingly complex,
middleware‐based programming paradigms have been particularly successful in reducing …
middleware‐based programming paradigms have been particularly successful in reducing …
[PDF][PDF] 3D Lagrangian VPM-FMM for Modelling the Near-Wake of a HAWT
TJ Berdowski - 2015 - repository.tudelft.nl
Traditionally, the design of the Horizontal Axis Wind Turbine (HAWT) has relied on
momentum-based methods such as the Blade Element-Momentum (BEM) models. With the …
momentum-based methods such as the Blade Element-Momentum (BEM) models. With the …