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This code, named E3D, developed by Larsen at the Lawrence Livermore National Laboratory, computes realistic simulation of elastic waves in a 3D geologic model.
The simulation of elastic fibers in the turbulent flow is performed on the works [4, 5], using an inextensible Kirchhoff beam model that is capable of large, geometrically nonlinear deformations and driven by a stochastic aerodynamic drag force.
The results obtained are correlated with the residual stresses of the coatings and a simulation of elastic stresses for a Hertzian pressure distribution on a coated substrate.
A new perfectly matched layer (PML) for the simulation of elastic waves in anisotropic media on an unbounded domain is constructed.
ANET is built through continuous GEANT3.21 applicability amplifications, comprising the simulation of particles' transport and interaction in low energy along with the accessibility of user-provided libraries and tracking algorithms for energies below 20 MeV, as well as the simulation of elastic and inelastic collision, capture and fission.
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We will discuss an new extension to the PDE coefficient handling provided by this C++ library which uses a lazy evaluation technique and will demonstrate the efficiency of this new extension in terms of compute time and memory usage for a practical engineering application, namely the simulation of elastic-plastic, saturated porous media.
Figure 3 FEM simulations of elastic behavior of a ND adhered to a substrate.
Principles of universal software design were developed for solving these complex problems of dynamic properties research, simulations of elastic vehicles motion and synthesis of perfect control law.
Problems of regulator's synthesis, damping of elastic oscillations, and also principles of construction of universal software for research of dynamic properties and simulations of elastic vehicles motion are considered.
The effective Young's modulus and Poisson's ratio of spherical monodisperse and polydisperse core-shell particles ordered or randomly distributed in a continuous matrix were predicted using detailed three-dimensional numerical simulations of elastic deformation.
The paper aims to demonstrate the synergy between X-ray computed tomography (CT) data for a concrete specimen and numerical simulations of elastic wave propagation in a purely numerical concrete model (NCM).
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