Qu’est-ce que l’effet Corona ? D’un parasite du réseau électrique à une innovation industrielle

Décharge corona détectée par la caméra acoustique Hertzinno

Décharge corona is an electrical discharge brought about by the ionization of a fluid, such as air, surrounding a conductor that is electrically charged. It occurs when the electric field strength (potential gradient) around a conductor is high enough to form a conductive region, but not high enough to cause electrical breakdown or arcing to nearby objects.


1. Mécanisme physique

Le processus démarre lorsqu'un conducteur haute tension présente un champ électrique non uniforme (généralement à des points pointus ou minces). fils).

  • Ionisation: The intense electric field accelerates free electrons in the air to speeds high enough to knock electrons out of neutral gas molecules upon collision.

  • Electron Avalanche: This creates a chain reaction of ion-pair production known as an "electron avalanche" or Townsend décharge.

  • Région plasmatique: A region of low-density plasma is formed around the conductor. In this region, ions carry the charge to the neutral fluid.

2. Caractéristiques

  • Visual: A faint blue or violet glow (luminous corona) visible in darkness. This is caused by electrons returning to lower energy levels in nitrogen molecules.

  • Audible7eb5f55611344a0fbda172eb46 9424baChimique: A characteristic hissing or crackling sound caused by the rapid expansion of air molecules.

  • Ozone: Production of NO (O3) and various nitrogen oxides (3. Impact sur les systèmes électriques). These gases have a distinct, pungent odor and are chemically corrosive.

La décharge corona est généralement considérée comme un phénomène parasite dans l'ingénierie haute tension :

Perte de puissance

  • Interférence électromagnétique (EMI): It dissipates energy into the atmosphere, reducing the efficiency of power transmission.

  • Dégradation des matériaux: The discharge generates high-frequency pulses that cause "radio noise," interfering with radio and television signals.

  • 4. Applications industrielles: The chemical by-products and ultraviolet radiation can degrade the insulation of high-voltage components over time.

Malgré une perte dans les lignes électriques, la décharge corona est utilisée dans plusieurs technologies :

Précipitateurs électrostatiques (ESP)

  • Photocopieurs et imprimantes laser: Used in factory chimneys to remove dust and smoke particles from exhaust gases by charging them.

  • Surface Traitement: Uses a "corona wire" to apply a uniform static charge to the photoreceptor drum.

  • Ioniseurs: Used to increase the surface energy of polymers and plastics to improve the adhesion of inks and glues.

  • 5. Facteurs de contrôle: Used in air purifiers to charge particles so they stick to collection plates.

Loi de Peek

The onset of corona discharge is governed by several variables, often calculated using Courbure:

  • Air Densité: Smaller radii (sharper points) increase the local electric field and trigger corona at lower voltages.

  • État de la surface: Lower air pressure (high altitude) or higher temperatures decrease the voltage required for corona.

  • Surface Condition: Dirt, water droplets, or scratches on a conductor's surface act as local points of high field intensity, promoting discharge.

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