Приклади вживання The finite element method Англійська мовою та їх переклад на Українською
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What do I have against the finite element method?
The finite element method was designed to deal with problem with complicated computational regions.
Strang and Fix 's An Analysis of The Finite Element Method.
The Finite element method was used to construct the mirror support in such a way that the deformed mirror will always take a parabolic shape.
What is the essence of the finite element method?
Magnetic systems of new acoustic systems were optimized usingsoftware that models electromagnetic processes based on the finite element method.
For this reason, we will develop the finite element method for P1 and outline its generalization to P2.
Other applications of Lloyd'salgorithm include smoothing of triangle meshes in the finite element method.
All structural components are calculated using the finite element method, using only high-quality steel S275 and S355 JR, ie J2(+ N).
It serves as an introduction to the recent analysis discipline known as the finite element method.
In 3D computer graphics, radiosity is an application of the finite element method to solving the rendering equation for scenes with surfaces that reflect light diffusely.
These are described bypartial differential equations which Elmer solves by the Finite Element Method(FEM).
The finite element method is a good choice for solving partial differential equations over complex domains or when the desired precision varies over the entire domain.
Next month's articlewill go into detail on the pre-processing phase of the finite element method.
Without adequate training on the finite element method and the specific FEA package, a new user will not be productive in a reasonable amount of time, and may in fact fail miserably.
A numerical solution to the heat equation on a pump casing model using the finite element method.
The finite element method(FEM) is a powerful technique originally developed for numerical solution of complex problems in structural mechanics, and it remains the method of choice for complex systems.
To overcome this, one uses some sortof numerical approximation of the derivatives, see for instance the finite element method or finite differences.
Sturdy nodular cast iron case, gears,carefully calculated by the finite element method, shafts and bearings, a wide range of options for operation in severe conditions, maximum reliability and trouble-free operation.
They agree best of all with the results of Keer and Bower, obtained by dislo-cation approach,and satisactorily with other data obtained by the finite element method.
In addition,the calculated values of the elastic deflections are determined using the finite element method using the software complex«SCAD» with the same initial data.
FEA is a demanding tool, in that the analyst must be proficient not only in elasticity or fluids, but also in mathematics, computer science,and especially the finite element method itself.
Development of the finite element method began in earnest in the middle to late 1950s for airframe and structural analysis and gathered momentum at the University of Stuttgart through the work of John Argyris and at Berkeley through the work of Ray W.
Several numerical methods are available for this problem, e.g.,the planewave expansion method, the finite element method, and the finite difference method. .
Relevant simulations were performed using the finite element method(FEM), during which the extremely complex structure of the components of the racing car was split up into a multitude of small components with predictable behaviour- the finite elements. .
Elmer includes physical models of fluid dynamics, structural mechanics, electromagnetics, heat transfer and acoustics, for example.[2]These are described by partial differential equations which Elmer solves by the Finite Element Method(FEM).
The finite element method obtained its real impetus in the 1960s and 1970s by John Argyris, and co-workers; at the University of Stuttgart, by Ray W. Clough; at the University of California, Berkeley, by Olgierd Zienkiewicz, and co-workers Ernest Hinton, Bruce Irons;[3] at the University of Swansea, by Philippe G. Ciarlet; at the University of Paris; at Cornell University, by Richard Gallagher and co-workers.
Modern numerical methods, techniques and software tools including numerical methods for initial and boundary-value problems for PDE(partial differential equations) basedon Galerkin-type approach, FEM(the finite element method), FDM(the finite difference method), etc.
Elsewhere on the Industrial Mathematical Modelling programme, you will also develop skills to solve partial differential equations and learn the basic principles behind,for example, the finite element method, which is heavily used in industry for solving structural problems.