Title :
Physical efficiency limits of inch-sized helical MFCG´s
Author :
Neuber, A.A. ; Hernandez, J.-C. ; Holt, T.A. ; Dickens, J.C. ; Kristiansen, M.
Author_Institution :
Center for Pulsed Power & Power Electron. Res., Texas Tech. Univ., Lubbock, TX, USA
Abstract :
Helical magnetic flux compression generators (MFCG) are attractive energy sources with respect to their specific energy output. A variety of one-time use applications would benefit from small inch-sized helical generators with high specific energy output. However, it is widely accepted that the generator performance deteriorates with decreasing size. Previous experimental data have shown that the increase of the ohmic resistance of the MFCG with a reduction in size is the primary cause for the observed behavior when the initial generator inductance is held constant. We will analyze the situation in more depth and quantify how much the efficiency is determined by ohmic losses and intrinsic flux losses (flux that is left behind in the conductors and lost for compression) for different generator sizes and geometries. Our simple constant diameter MFCGs exhibit more intrinsic than ohmic losses (69% compared to 16%), while our MFCGs with tapered armatures display less intrinsic and more ohmic flux losses (13% compared to 66%), however, at increased overall efficiency. We will show experimental and calculated data and discuss the physical efficiency limits and scaling of generator performance at small sizes.
Keywords :
pulse generators; pulsed power supplies; MFCG; energy source; generator scaling; helical magnetic flux compression generator; intrinsic flux losses; ohmic losses; ohmic resistance; physical efficiency; small inch-sized helical generator; Circuits; Conductors; Differential equations; Geometry; Inductance; Magnetic flux; Magnetic materials; Performance loss; Power engineering and energy; Skin;
Conference_Titel :
Pulsed Power Conference, 2003. Digest of Technical Papers. PPC-2003. 14th IEEE International
Conference_Location :
Dallas, TX, USA
Print_ISBN :
0-7803-7915-2
DOI :
10.1109/PPC.2003.1277740