Schwerteilchen-Transport in Niedertemperatur-Plasmen - Modellierung Technisch Relevanter Plasmen -
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Schwerteilchen-Transport in Niedertemperatur-Plasmen - Modellierung Technisch Relevanter Plasmen -

Schwerteilchen-Transport in Niedertemperatur-Plasmen - Modellierung Technisch Relevanter Plasmen -


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About the Book

Die modelltheoretische Beschreibung der Schwerteilchen eines hochfrequenzgetriebenen Niedertemperatur-Plasmas erfordert neben der exakten Darstellung der dynamischen Vorgange auch eine exakte Berucksichtigung des chemischen Verhaltens. Fur die Simulation dieses elektrisch leitfahigen Mediums ist daher die konsistente Kombination beider Aspekte Voraussetzung. Wahrend bereits ausgereifte mathematische Modelle existieren, die die Dynamik eines Schwerteilchensystems darstellen, stehen nur einige wenige Ansatze zur Beschreibung des individuellen Verhaltens reaktiver chemischer Gaszusammensetzungen zur Verfugung. Sieht man von zu stark vereinfachenden Modellen ab (z.B. konstante Schwerteilchentemperatur, konstante Materialkonstanten), so beschreiben einige, etwas bessere Modelle das dynamische Verhalten uber Mittelwertbildungen. Die verschiedenen Schwerteilchensorten des Plasmagases werden dadurch auf ein Gesamtmedium reduziert. Andere Modelle versuchen dieses zu umgehen und beschreiben jede einzelne Schwerteilchensorte durch einen sehr aufwendigen, individuellen fluiddynamischen Ansatz. Die beiden genannten Beschreibungsformen sind jedoch fur eine Simulation von Niedertemperatur-Plasmen nicht gut geeignet. Entweder werden durch die verwendeten Mittelungen die individuellen chemischen Eigenschaften zu stark vereinfacht, oder aber das gemeinsame dynamische Verhalten wird durch die individuelle Fluiddynamik nicht genugend berucksichtigt. Eine optimale und konsistente Vereinigung des chemischen und dynamischen Systemverhaltens fur ein reaktives Plasma mit vielen verschiedenen Schwerteilchensorten ist daher notwendig. Mit dem Modell der vorliegenden Arbeit existiert nun erstmals eine Beschreibungsform, die diese Kombination fur Niedertemperatur-Plasmen gewahrleistet. Die Einbettung des individuellen chemischen Verhaltens in ein fluiddynamisches Schwerteilchenmodell, das den Gesamtimpuls und die Gesamtenergie des Schwerteilchensystems beschreibt, fuhrt dabei auf eine geeignete Berechnungsvorschrift. Die Modellgleichungen werden dazu konsistent aus einer kinetischen Betrachtung hergeleitet und mit der klassischen, fluiddynamischen Beschreibungsform in Zusammenhang gebracht. Nach einer Skalenuntersuchung der systemrelevanten Prozesse ergibt sich ein algebraisches Gleichungssystem, das die individuellen Eigenschaften adaquat im Kontext der dynamischen Vorgange beschreibt. In einem abschliessenden Kapitel werden die Gemeinsamkeiten und Unterschiede zu etablierten Beschreibungsformen dargestellt und diskutiert. Anhand eines Beispiels werden die hohe Qualitat und die numerisch einfache Umsetzbarkeit verdeutlicht.


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Product Details
  • ISBN-13: 9783832517410
  • Publisher: Logos Verlag Berlin
  • Binding: Paperback
  • Language: German
  • Returnable: N
  • Spine Width: 0 mm
  • Width: 145 mm
  • ISBN-10: 3832517413
  • Publisher Date: 30 Nov 2007
  • Height: 210 mm
  • No of Pages: 173
  • Series Title: German
  • Weight: 750 gr


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