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#30362 / #2

Seit SS 2016

English

Refrigeration Installations

6

Morozyuk, Tetyana

benotet

Portfolioprüfung

Zugehörigkeit


Fakultät III

Institut für Energietechnik

33375100 FG S-Professur Exergiebasierte Methoden für kältetechnische Systeme

MSc Energie- und Verfahrenstechnik

Kontakt


KT 1

Morozyuk, Tetyana

tetyana.morozyuk@tu-berlin.de

Learning Outcomes

The students should: • become familiar with the principles of operation of refrigeration installations, modern methods of analysis and evaluation of refrigeration installations and principles from the design of the components of refrigeration installations, • are able to choose an adequate tool for the evaluation and optimisation of refrigeration installations • have skills in preparing data and informations for the design and evaluation of the system, • have the ability to independently solve engineering tasks in the field of refrigeration installations. The module conveys: 20% Knowledge & Comprehension, 20% Analysis & Method, 20% Inventor & Design, 20 % Research & Evaluation, 20 % Application & Practice

Content

• Classification of refrigeration installations • Refrigeration machine as a part of refrigeration installation • Cooling systems • Storage rooms: Insulation, equipment, cold air distribution systems • Systems for removing heat of condensation • Design of refrigeration installations • Refrigeration installations for different applications • Air liquefaction and separation systems

Module Components

Pflichtgruppe:

All Courses are mandatory.

Course NameTypeNumberCycleLanguageSWSVZ
Refrigeration InstallationsIV0330 L462 SoSeEnglish4

Workload and Credit Points

Refrigeration Installations (IV):

Workload descriptionMultiplierHoursTotal
Präsenzzeit15.04.0h60.0h
Vor-/Nachbereitung15.04.0h60.0h
120.0h(~4 LP)

Course-independent workload:

Workload descriptionMultiplierHoursTotal
literature reading and preparation of case study1.030.0h30.0h
preparation for the examination1.030.0h30.0h
60.0h(~2 LP)
The Workload of the module sums up to 180.0 Hours. Therefore the module contains 6 Credits.

Description of Teaching and Learning Methods

Contents are presented in lectures illustrated by exercises and case studies.

Requirements for participation and examination

Desirable prerequisites for participation in the courses:

Preferable: Basic knowledge of thermodynamics, heat transfer and fluid dynamics

Mandatory requirements for the module test application:

This module has no requirements.

Module completion

Grading

graded

Type of exam

Portfolio examination

Type of portfolio examination

100 Punkte insgesamt

Language

English

Test elements

NamePointsCategorieDuration/Extent
Hausaufgaben zum Modul30writtenNo information
schriftliche Prüfung zum Modul70writtenNo information

Grading scale

No information

Test description (Module completion)

In diesem Modul müssen während des Semesters Hausaufgaben bearbeitet werden. Zum Ende des Semesters findet eine schriftliche Klausur statt. Die Endnote ergibt sich gewichtet aus beiden Teilen.

Duration of the Module

The following number of semesters is estimated for taking and completing the module:
1 Semester.

This module may be commenced in the following semesters:
Sommersemester.

Maximum Number of Participants

This module is not limited to a number of students.

Registration Procedures

Students have to register for the exam (Portfolioprüfung) at least one working day prior to the examination date of the first component of the exam. Registration has to be done with the examination office (Prüfungsamt) of the TU Berlin.

Recommended reading, Lecture notes

Lecture notes

Availability:  available
Additional information:
Printed script in English is available, Sekr. KT1, Room 8

 

Electronical lecture notes

Availability:  unavailable

 

Literature

Recommended literature
No recommended literature given

Assigned Degree Programs


This module is used in the following Degree Programs (new System):

Studiengang / StuPOStuPOsVerwendungenErste VerwendungLetzte Verwendung
Energie- und Verfahrenstechnik (M. Sc.)113SS 2018SoSe 2024
Process Energy and Environmental Systems Engineering (M. Sc.)223SS 2016SoSe 2024

Students of other degrees can participate in this module without capacity testing.

Miscellaneous

No information