Title :
Finite element calculation leakage inductances of a saturated salient-pole synchronous machine with damper circuits
Author :
Shima, K. ; Ide, K. ; Takahashi, M.
Abstract :
Summary form only given. It is important to understand the relationship between leakage flux distributions and machine characteristics for better design of synchronous machines. This paper presents a calculation method for leakage inductances of saturated salient-pole machines with damper circuits. The whole leakage inductances are divided into the self-leakage, gap leakage and winding-differential leakage inductances. The leakage inductances correspond directly to the leakage flux distributions in the machines. Cross-magnetizing inductances are also calculated. The method is applied to a 300 MVA class generator. The relationship between the winding distributions, flux distributions, saturation and inductances is discussed. Weak magnetic influence of the damper circuits on the armature in the d-axis is quantitatively illustrated through values of the winding-differential leakage inductances. The cross-magnetizing inductances except for the d-axis damper circuits are relatively large. Variations of the armature self-leakage inductances with saturation are small, and variation of the field and damper self-leakage inductances are larger.
Keywords :
damping; finite element analysis; inductance; machine windings; magnetic flux; magnetic leakage; magnetisation; synchronous machines; 300 MVA; armature self-leakage inductances; cross-magnetizing inductances; damper circuits; finite element calculation leakage inductances; leakage flux distribution; machine characteristics; saturated salient-pole synchronous machine; winding distribution; winding-differential leakage inductances; Damping; Finite element methods; Magnetic circuits; Magnetic flux; Saturation magnetization; Shock absorbers; Synchronous machines;
Conference_Titel :
Power Engineering Society General Meeting, 2003, IEEE
Print_ISBN :
0-7803-7989-6
DOI :
10.1109/PES.2003.1267373