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Bilancio termico e squilibrio termico nell'elettricità

Bilancio termico e squilibrio termico nell'elettricità

          
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About the Book

generalmente nei plasmi si suppone che gli elettroni siano in equilibrio termico, con questa approssimazione si possono utilizzare diverse approssimazioni e si possono risolvere diversi problemi quali: la possibilità di utilizzare le approssimazioni del regime idrodinamico. inoltre, in queste condizioni la funzione di distribuzione degli elettroni può essere assunta maxwelliana. diventa quindi possibile la simulazione della densità elettronica mediante il metodo del modello fluido e l'equazione di Boltzmann.
inoltre, le scariche elettriche continue sono spesso utilizzate per creare stati di equilibrio dinamico in cui esiste un equilibrio tra produzione (sorgenti) e perdita [1]. un certo numero di ricercatori ha studiato l'eedf (funzione di distribuzione dell'energia elettronica) dello stato di equilibrio in varie scariche di gas sotto un campo elettrico cc applicato. per esempio engelhardt e phelps [2] hanno derivato un insieme di sezioni d'urto elastiche e anelastiche per gli elettroni in h e d, risolvendo l'equazione di Bolzmann usando l'approssimazione a due termini. nighan [3] ha studiato l'eedf ei tassi di collisione nei gas n2, co e co2. tagashira, sakai e sakamoto [4] hanno risolto l'equazione di Boltzmann per un campo elettrico altamente ridotto (e / n) in ar. yachi et al [5] hanno utilizzato l'approssimazione multi-termine per risolvere l'equazione di Boltzmann. yochida et al


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Product Details
  • ISBN-13: 9798777808554
  • Publisher: Independently Published
  • Binding: Paperback
  • Language: Italian
  • Returnable: N
  • Weight: 222 gr
  • ISBN-10: 877780855X
  • Publisher Date: 02 Dec 2021
  • Height: 203 mm
  • No of Pages: 216
  • Spine Width: 12 mm
  • Width: 127 mm


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