Courses in Stud.IP

current semester
link to course in Stud.IP Studip_icon
Reactor Design Using Local Transport Processes (PBL)
Subtitle:
This course is part of the module: Transport Processes
Semester:
WiSe 23/24
Course type:
PBL -Projekt-/problembasierte Lehrveranstaltung (Lehre)
Course number:
lv105_w23
Lecturer:
Prof. Dr. Michael Schlüter, Nicolas Nickel, M. Sc, M. Sc. Daniel Niehaus
Description:

In this Problem-Based Learning unit the students have to design a multiphase reactor for a fast chemical reaction concerning optimal hydrodynamic conditions of the multiphase flow.

Pre-requisites:
line-height:1.8em
Performance accreditation:
> </span></p><p>The four students in each team have to:</p><ul><li>collect and discuss material properties and equations for design from the literature,</li><li>calculate the optimal hydrodynamic design,</li><li>check the plausibility of the results critically,</li><li>write an exposé with the results.</li></ul><p>This exposé will be used as basis for the discussion within the oral group examen of each team.</p>
ECTS credit points:
2
Stud.IP informationen about this course:
Home institute: Institut für Mehrphasenströmungen (V-5)
Registered participants in Stud.IP: 43
Documents: 3
former semester
link to course in Stud.IP Studip_icon
Reactor Design Using Local Transport Processes (PBL)
Subtitle:
This course is part of the module: Transport Processes
Semester:
WiSe 23/24
Course type:
PBL -Projekt-/problembasierte Lehrveranstaltung (Lehre)
Course number:
lv105_w23
Lecturer:
Prof. Dr. Michael Schlüter, Nicolas Nickel, M. Sc, M. Sc. Daniel Niehaus
Description:

In this Problem-Based Learning unit the students have to design a multiphase reactor for a fast chemical reaction concerning optimal hydrodynamic conditions of the multiphase flow.

Pre-requisites:
line-height:1.8em
Performance accreditation:
> </span></p><p>The four students in each team have to:</p><ul><li>collect and discuss material properties and equations for design from the literature,</li><li>calculate the optimal hydrodynamic design,</li><li>check the plausibility of the results critically,</li><li>write an exposé with the results.</li></ul><p>This exposé will be used as basis for the discussion within the oral group examen of each team.</p>
ECTS credit points:
2
Stud.IP informationen about this course:
Home institute: Institut für Mehrphasenströmungen (V-5)
Registered participants in Stud.IP: 43
Documents: 3

Courses

For information on courses and modules, please refer to the current course catalogue and module manual of your degree programme.

Module / Course Period ECTS Credit Points
Module: Electrical Power Systems I: Introduction to Electrical Power Systems WiSe 6
Module: Electrical Power Systems II: Operation and Information Systems of Electrical Power Grids WiSe 6
Module: Electrical Power Systems III: Dynamics and Stability of Electrical Power Systems SuSe 6
Module: Electrical Engineering II: Alternating Current Networks and Basic Devices SuSe 6
Module: Electrical Engineering Project Laboratory SuSe 6
Module: Process Measurement Engineering SuSe 4
Module: Smart Grid Technologies WiSe, SuSe 6

Course: Seminar on Electromagnetic Compatibility and Electrical Power Systems

Further Information

WiSe, SuSe 2

SuSe: Summer Semester
WiSe: Winter Semester