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Exact(17)
This method employs the backward Euler formulae for evaluating both displacements and velocities of structures.
Indeed, the theory need not explicitly introduce continuity conditions for both displacements and relevant stresses.
Such improvements lead to accurate computation of both displacements and stresses in both the boundary and the domain.
Its principal aim is to accurately predict both displacements and stresses using a simple procedure and few unknown variables.
The variational consistent equilibrium equations and boundary conditions in terms of both displacements and stress resultants are derived by utilizing the variational principle.
Both displacements and stresses are evaluated simultaneously with the same degree of accuracy which is the main feature of the present development.
Similar(43)
Both displacement and stress calculation reveal sensible deficiencies for both linear and non-linear applications.
In this way, both displacement and stress can be accurately obtained.
The faults can be added to a flow simulation grid as both displacement and seal.
Weak Galerkin linear finite elements are used for both displacement and pressure approximations in spatial discretizations.
The reproducing kernel (RK) shape function is employed to discretize both displacement and bulk density fields.
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