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Magnetic complex reluctance

Magnetic complex reluctance (SI Unit: H−1) is a measurement of a passive magnetic circuit (or element within that circuit) dependent on sinusoidal magnetomotive force (SI Unit: At·Wb−1) and sinusoidal magnetic flux (SI Unit: T·m2), and this is determined by deriving the ratio of their complex effective amplitudes.[Ref. 1-3]

As seen above, magnetic complex reluctance is a phasor represented as uppercase Z mu where:

  • and represent the magnetomotive force (complex effective amplitude)
  • and represent the magnetic flux (complex effective amplitude)
  • , lowercase z mu, is the real part of magnetic complex reluctance

The "lossless" magnetic reluctance, lowercase z mu, is equal to the absolute value (modulus) of the magnetic complex reluctance. The argument distinguishing the "lossy" magnetic complex reluctance from the "lossless" magnetic reluctance is equal to the natural number raised to a power equal to:

Where:
  • is the imaginary number
  • is the phase of the magnetomotive force
  • is the phase of the magnetic flux
  • is the phase difference

The "lossy" magnetic complex reluctance represents a magnetic circuit element's resistance to not only magnetic flux but also to changes in magnetic flux. When applied to harmonic regimes, this formality is similar to Ohm's Law in ideal AC circuits. In magnetic circuits, magnetic complex reluctance is equal to:

Where:
  • is the length of the circuit element
  • is the cross-section of the circuit element
  • is the complex magnetic permeability

References edit

  • Bull B. K. The Principles of Theory and Calculation of the Magnetic Circuits. – M.-L.: Energy, 1964, 464 p. (In Russian).
  • Arkadiew W. Eine Theorie des elektromagnetischen Feldes in den ferromagnetischen Metallen. – Phys. Zs., H. 14, No 19, 1913, S. 928–934.
  • Küpfmüller K. Einführung in die theoretische Elektrotechnik, Springer-Verlag, 1959.

magnetic, complex, reluctance, unit, measurement, passive, magnetic, circuit, element, within, that, circuit, dependent, sinusoidal, magnetomotive, force, unit, sinusoidal, magnetic, flux, unit, this, determined, deriving, ratio, their, complex, effective, amp. Magnetic complex reluctance SI Unit H 1 is a measurement of a passive magnetic circuit or element within that circuit dependent on sinusoidal magnetomotive force SI Unit At Wb 1 and sinusoidal magnetic flux SI Unit T m2 and this is determined by deriving the ratio of their complex effective amplitudes Ref 1 3 Z m N F N m F m z m e j ϕ displaystyle Z mu frac dot N dot Phi frac dot N m dot Phi m z mu e j phi As seen above magnetic complex reluctance is a phasor represented as uppercase Z mu where N displaystyle dot N and N m displaystyle dot N m represent the magnetomotive force complex effective amplitude F displaystyle dot Phi and F m displaystyle dot Phi m represent the magnetic flux complex effective amplitude z m displaystyle z mu lowercase z mu is the real part of magnetic complex reluctance The lossless magnetic reluctance lowercase z mu is equal to the absolute value modulus of the magnetic complex reluctance The argument distinguishing the lossy magnetic complex reluctance from the lossless magnetic reluctance is equal to the natural number e displaystyle e raised to a power equal to j ϕ j b a displaystyle j phi j left beta alpha right Where j displaystyle j is the imaginary number b displaystyle beta is the phase of the magnetomotive force a displaystyle alpha is the phase of the magnetic flux ϕ displaystyle phi is the phase difference The lossy magnetic complex reluctance represents a magnetic circuit element s resistance to not only magnetic flux but also to changes in magnetic flux When applied to harmonic regimes this formality is similar to Ohm s Law in ideal AC circuits In magnetic circuits magnetic complex reluctance is equal to Z m 1 m m 0 l S displaystyle Z mu frac 1 dot mu mu 0 frac l S Where l displaystyle l is the length of the circuit element S displaystyle S is the cross section of the circuit element m m 0 displaystyle dot mu mu 0 is the complex magnetic permeabilityReferences editBull B K The Principles of Theory and Calculation of the Magnetic Circuits M L Energy 1964 464 p In Russian Arkadiew W Eine Theorie des elektromagnetischen Feldes in den ferromagnetischen Metallen Phys Zs H 14 No 19 1913 S 928 934 Kupfmuller K Einfuhrung in die theoretische Elektrotechnik Springer Verlag 1959 Retrieved from https en wikipedia org w index php title Magnetic complex reluctance amp oldid 1163883599, wikipedia, wiki, book, books, library,

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