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For convenient expression of magnetic field, three types of approximated dihedral cone shaped magnet poles are put forward based on different equivalent principles.
The model parameters for sample filling ratios are determined by an efficient finite element method according to equivalent principles, while the parameters for other filling ratios are obtained by piecewise linear interpolation.
Constructive and intuitionistic set theories can be seen as modifications of classical ZF set theory that are obtained by: (1) replacing classical with intuitionistic logic, and (2) accurately choosing, among various classically equivalent principles, those which seem more appropriate for given purposes.
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In addition, the reinforcing ratio is considered based on the equivalent principle of composite mechanics.
On the basis of optimal equivalent principle, accurate harmonic model is set up with the magnetic field formulated.
Through an equivalent principle, the effective thermoelectric properties are given and the influence of applied temperature, crack boundary, crack size, and crack shape are discussed in detail.
Second, the effective elastic properties of the RVE in 2.5D C/SiC composites are obtained using finite element method (FEM) simulation based on energy equivalent principle.
The nonlinear parameters of non-wind-induced aeroelastic force were identified by an energy equivalent principle (EEP) from the free-decay response in still air.
After the wave scatter diagram is partitioned into several blocks, the newly developed method, involves determination of the equivalent wave height, wave period and occurrence probability of the representative sea states based on modified energy equivalent principle.
This model is a deformation-based continuum damage model with stiffness degradation and is based on a deformation equivalent principle and generalized force deformation relationships for concrete and its steel reinforcement.
To verify the present method, a deepwater semisubmersible system operated in 1500 m and 1000 m water depth is truncated to 200 m water depth based on the static equivalent principle (the truncation factors are 7.5 and 5 respectively), and the dynamically similar design is implemented to the model tests which are carried out at China Ship Scientific Research Center wave basin.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com