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1.Numerical solution of eddy currents problems including moving conducting parts
Burais, N.; Foggia, A.; Nicolas, A.; Pascal, J.; Sabonnadiere, J.;
Magnetics, IEEE Transactions on
Volume 20, Issue 5, Sep 1984 Page(s):1995 - 1997
Summary: In the study of transient or steady-state eddy current effects, a general
diffusion equation derived from Maxwell's equations is solved by a classical finite element
method for the spatial problem with time discretization. The moving part of the syst.....
2.Boundary conditions for small displacements in a magnetic field
Basore, P.;
Magnetics, IEEE Transactions on
Volume 21, Issue 2, Mar 1985 Page(s):1186 - 1192
Summary: When mechanical displacements occur in the presence of a magnetic field, the
movement of the material boundaries causes a change in the field throughout the system. In
a linear perturbation analysis, the effect of small boundary displacements can be .....
3.A three dimensional finite element mesh connection for problems involving movement
Perrin-Bit, R.; Coulomb, J.L.;
Magnetics, IEEE Transactions on
Volume 31, Issue 3, May 1995 Page(s):1920 - 1923
Digital Object Identifier 10.1109/20.376415
Summary: A new technique for use in 3-D finite element models of devices which move is
proposed. Independent meshes are connected together at a suitable interface such as the air
gap of a conventional electric machine using a specific processing method for co.....
4.The movement in field modeling
Davat, B.; Ren, Z.; Lajoie-Mazenc, M.;
Magnetics, IEEE Transactions on
Volume 21, Issue 6, Nov 1985 Page(s):2296 - 2298
Summary: The different ways of considering the movement in field equations are first presented. Then the proposed methods and the accuracy of the obtained results are illustrated by simulation examples......
5.A new algorithm for coupled solutions of electric, magnetic and mechanical systems in dynamic simulation of solenoid actuators
Kuan-Ya Yuan; Shih-Chou Chen;
Magnetics, IEEE Transactions on
Volume 26, Issue 3, May 1990 Page(s):1189 - 1197
Digital Object Identifier 10.1109/20.53997
Summary: An algorithm is presented for the simultaneous solutions of the coupled electric,
magnetic, and mechanical problems in the dynamic simulation of a solenoid actuator. The
transient nonlinear field in the coupled problem is analyzed using the finite-el.....
AbstractPlus | Full Text: PDF(552 KB) IEEE JNL
6.Computation of transient electromagnetic torque in a turbogenerator under the cases of different sudden short circuits
Tang Renyuan; Hu Yan; Lu Zhanhong; Yang Shiyou; Miao Lijie;
Magnetics, IEEE Transactions on
Volume 26, Issue 2, Mar 1990 Page(s):1042 - 1045
Digital Object Identifier 10.1109/20.106499
Summary: A method for the computation of the transient electromagnetic torque in turbogenerators is given in which the iron saturation and the relative motion of the rotor and stator are taken into account. This method is based on the finite-element computati.....
AbstractPlus | Full Text: PDF(292 KB) IEEE JNL
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[ 本帖最后由 北极熊甲 于 2007-8-5 11:05 编辑 ] |
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