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Strukturbaum
Keine Einordnung ins Vorlesungsverzeichnis vorhanden. Veranstaltung ist aus dem Semester WiSe 2023/24 , Aktuelles Semester: SoSe 2024
  • Funktionen:
Reactive Flows    Sprache: Englisch    Keine Belegung möglich
(Keine Nummer) Vorlesung     WiSe 2023/24     2 SWS     jedes 2. Semester    
   Lehreinheit: Maschinenbau    
 
      ISE/ME M.Sc. 2, ISE/Mechanical Engineering (Master of Science, EE, PL, ME)   ( 1. Semester ) - Studienphase : 1. FS    
  15 M.Sc.ISE, Mechanical Engineering (Master of Science, M)   ( 1. Semester )
  15 M.Sc.ISE, Mechanical Engineering (Master of Science, EEE)   ( 1. Semester )
  15 M.Sc.ISE, Mechanical Engineering (Master of Science, GME)   ( 1. Semester )
  15 M.Sc. ISE, Mechanical Engineering (Master of Science, SOT - Ship and Offshore Technology)   ( 1. Semester )
  ISE/ME M.Sc. 1, ISE/Mechanical Engineering (Master of Science, GME)   ( 1. Semester ) - Studienphase : 1. FS    
   Zugeordnete Lehrpersonen:   wiss. Mitarbeiter ,   Schulz
 
 
 
   Termin: Dienstag   08:00  -  09:30    wöch.       Raum :   LB 134   LB  
 
 
   Kommentar:

Beschreibung:
Reactive flows play a major role in technical processes for energy generation and material synthesis and are used in numerous technical plants. A central element is the coupling of fluid dynamics, chemical reaction and mass and heat transfer.The understanding of these processes strongly relies on chemical thermodynamics and chemical kinetics. The interaction between reaction and fluid flow is of special interest in reactive gas-phase processes with strong energy release. High temperature gas-phase reactions require the fundamental understanding of radical reactions and complex reaction schemes.
1 Introduction
2 Reactive fluids and energy science
3 Chemical thermodynamics and reaction kinetics
4 General flame phenomena and parameters of combustion technology
5 Transport processes
6 Heterogeneous reactions

 

Lernziele:
The students learn to explain and critically review the thermodynamical and kinetics background of high-temperature gas-phase reactions.