Lehrveranstaltungen in Stud.IP

aktuelles Semester
link to course in Stud.IP Studip_icon
CAPE with Computer Exercises (IV)
Subtitle:
This course is part of the module: CAPE - Computer Aided Process Engineering, Process Simulation and Process Safety
Semester:
SoSe 24
Course type:
Lecture
Course number:
lv1039_s24
Lecturer:
Prof. Dr. Mirko Skiborowski, Alina Dobschall, Anna Sophia Horsch, Thomas Waluga, Dozent V4, M. Sc Momme Adami, Marius Fiedler, Siv Magdalena Kinau, Kai Kruber, Francesca Meyer, Lucas Schaare
Description:

I. Introduction

       1. Fundamentals of steady state process simulation

       1.1. Classes of simulation tools
       1.2. Sequential-modularer approach
       1.3. Operating mode of ASPEN PLUS
       2. Introduction in ASPEN PLUS
       2.1. GUI
       2.2. Estimation methods of physical properties
       2.3. Aspen tools (z.B. Designspecification)
       2.4. Convergence methods

II. Exercices using ASPEN PLUS and ACM

            Performance and constraints of ASPEN PLUS
            ASPEN datenbank using
            Estimation methods of physical properties

            Application of model databank, process synthesis

            Design specifications

            Sensitivity analysis
            Optimization tasks
            Industrial cases

Performance accreditation:
600 - CAPE - Computer Aided Process Engineering<ul><li>600 - CAPE - Computer Aided Process Engineering: Klausur schriftlich</li></ul><br>m1954-2023 - Process Simulation and Process Safety<ul><li>p1952-2023 - Process Simulation and Process Safety: Subject theoretical and practical work</li></ul><br>m897 - CAPE - Computer Aided Process Engineering<ul><li>600 - CAPE - Computer Aided Process Engineering: Klausur schriftlich</li><li>vl352 - Compulsory Course Work Computer Aided Process Engineering (CAPE) - Group discussion: Group discussion</li></ul><br>m897 - CAPE - Computer Aided Process Engineering<ul><li>p328 - CAPE - Computer Aided Process Engineering: Klausur schriftlich</li><li>vl352 - Compulsory Course Work Computer Aided Process Engineering (CAPE) - Group discussion: Group discussion</li></ul><br>m897-2022 - CAPE - Computer Aided Process Engineering<ul><li>p328-2022 - Computer Aided Process Engineering (CAPE): Subject theoretical and practical work</li><li>vl352 - Compulsory Course Work Computer Aided Process Engineering (CAPE) - Group discussion: Group discussion</li></ul>
ECTS credit points:
4
Stud.IP informationen about this course:
Home institute: Institut für Systemverfahrenstechnik (V-4)
Registered participants in Stud.IP: 45
Documents: 31
voriges Semester
link to course in Stud.IP Studip_icon
CAPE with Computer Exercises (IV)
Subtitle:
This course is part of the module: CAPE - Computer Aided Process Engineering, Process Simulation and Process Safety
Semester:
SoSe 24
Course type:
Lecture
Course number:
lv1039_s24
Lecturer:
Prof. Dr. Mirko Skiborowski, Alina Dobschall, Anna Sophia Horsch, Thomas Waluga, Dozent V4, M. Sc Momme Adami, Marius Fiedler, Siv Magdalena Kinau, Kai Kruber, Francesca Meyer, Lucas Schaare
Description:

I. Introduction

       1. Fundamentals of steady state process simulation

       1.1. Classes of simulation tools
       1.2. Sequential-modularer approach
       1.3. Operating mode of ASPEN PLUS
       2. Introduction in ASPEN PLUS
       2.1. GUI
       2.2. Estimation methods of physical properties
       2.3. Aspen tools (z.B. Designspecification)
       2.4. Convergence methods

II. Exercices using ASPEN PLUS and ACM

            Performance and constraints of ASPEN PLUS
            ASPEN datenbank using
            Estimation methods of physical properties

            Application of model databank, process synthesis

            Design specifications

            Sensitivity analysis
            Optimization tasks
            Industrial cases

Performance accreditation:
600 - CAPE - Computer Aided Process Engineering<ul><li>600 - CAPE - Computer Aided Process Engineering: Klausur schriftlich</li></ul><br>m1954-2023 - Process Simulation and Process Safety<ul><li>p1952-2023 - Process Simulation and Process Safety: Subject theoretical and practical work</li></ul><br>m897 - CAPE - Computer Aided Process Engineering<ul><li>600 - CAPE - Computer Aided Process Engineering: Klausur schriftlich</li><li>vl352 - Compulsory Course Work Computer Aided Process Engineering (CAPE) - Group discussion: Group discussion</li></ul><br>m897 - CAPE - Computer Aided Process Engineering<ul><li>p328 - CAPE - Computer Aided Process Engineering: Klausur schriftlich</li><li>vl352 - Compulsory Course Work Computer Aided Process Engineering (CAPE) - Group discussion: Group discussion</li></ul><br>m897-2022 - CAPE - Computer Aided Process Engineering<ul><li>p328-2022 - Computer Aided Process Engineering (CAPE): Subject theoretical and practical work</li><li>vl352 - Compulsory Course Work Computer Aided Process Engineering (CAPE) - Group discussion: Group discussion</li></ul>
ECTS credit points:
4
Stud.IP informationen about this course:
Home institute: Institut für Systemverfahrenstechnik (V-4)
Registered participants in Stud.IP: 45
Documents: 31

Lehrveranstaltungen

Informationen zu den Lehrveranstaltungen und Modulen entnehmen Sie bitte dem aktuellen Vorlesungsverzeichnis und dem Modulhandbuch Ihres Studienganges.

Modul / Lehrveranstaltung Zeitraum ECTS Leistungspunkte
Modul: Elektrische Energiesysteme I: Einführung in elektrische Energiesysteme WiSe 6
Modul: Elektrische Energiesysteme II: Betrieb und Informationssysteme elektrischer Energienetze WiSe 6
Modul: Elektrische Energiesysteme III: Dynamik und Stabilität elektrischer Energiesysteme SoSe 6
Modul: Elektrotechnik II: Wechselstromnetzwerke und grundlegende Bauelemente SoSe 6
Modul: Elektrotechnisches Projektpraktikum SoSe 6
Modul: Prozessmesstechnik SoSe 4
Modul: Smart-Grid-Technologien WiSe, SoSe 6

Lehrveranstaltung: Seminar zu Elektromagnetischer Verträglichkeit und Elektrischer Energiesystemtechnik

weitere Information

WiSe, SoSe 2

SoSe: Sommersemester
WiSe: Wintersemester