Aktiviere Job-Benachrichtigungen per E-Mail!

Master Thesis - User Behavior in Buildings based on Automated Model Generation

TN Germany

Jülich

Vor Ort

EUR 40.000 - 60.000

Vollzeit

Gestern
Sei unter den ersten Bewerbenden

Erhöhe deine Chancen auf ein Interview

Erstelle einen auf die Position zugeschnittenen Lebenslauf, um deine Erfolgsquote zu erhöhen.

Zusammenfassung

A leading research institution in Jülich is offering a Master's thesis opportunity focused on analyzing user behavior in buildings through automated model generation. The role involves using Python and Dymola for simulations, contributing to energy efficiency goals. Candidates should have a Master's background in engineering or related fields and possess strong analytical skills. Flexible working hours and a supportive environment are provided.

Leistungen

Flexible working hours
Excellent technical equipment for remote work
Interdisciplinary work environment
Intensive supervision by experienced colleagues
Diverse working group

Qualifikationen

  • Good knowledge of a programming language, preferably Python and Modelica.
  • Interest in topics of energy engineering and building simulation.

Aufgaben

  • Simulation and analysis of the deviation between real and ideal user behavior.
  • Investigation of energy consumption deviations in buildings.

Kenntnisse

Python
Analytical Skills
Energy Engineering

Ausbildung

Master studies in mechanical engineering
Master studies in industrial engineering
Master studies in process engineering
Master studies in informatics
Master studies in mathematics

Tools

Dymola
Modelica

Jobbeschreibung

Social network you want to login/join with:

Master Thesis - User Behavior in Buildings based on Automated Model Generation, Jülich
Client:
Location:
Job Category:

Other

EU work permit required:

Yes

Job Reference:

9a5931872a31

Job Views:

1

Posted:

16.05.2025

Expiry Date:

30.06.2025

Job Description:

Your Job:

The building sector offers a large potential for energy savings and the realization of the climate and energy consumption goals defined by Germany and the EU. Using building simulation models, the energy consumption during operation can be simulated from different angles. Based on a toolchain, which automatically generates building Modelica models based on an intuitive language for room descriptions developed at the institute, campus building plans and measurement data, simulation should be conducted with respect to different aspects that are playing an ever greater role in future buildings. In this work, it should be analyzed, based on existing measurement data, how much the real user behavior on the campus deviates from an ideal simulated one. The deviation of the consumption estimated during the planning of the building from the one measured during operation constitutes a peculiarity that occurs in a wide range of buildings. This phenomenon should be further investigated to reveal inefficiencies in user behavior and to provide a base for sensitization of users. Tools for conducting the work are Python for implementation of the analysis tools and partly the simulation software Dymola for simulation and modeling of the Modelica building models.

  • Simulation and analysis of the deviation between real and ideal, energy-efficient user behavior based on existing measurement data
  • Investigation of the widespread phenomenon that the energy consumption estimated during the planning of buildings substantially deviates from the one measured during operation
  • Revealing of inefficiencies in user behavior and provision of a base for sensitization of users
  • Tools are Python for implementation of the analysis tools and partly the simulation software Dymola for simulation and modeling of the Modelica building models

Your Profile:

  • Master studies in the field of mechanical engineering, industrial engineering, process engineering, informatics and mathematics or similar
  • Good knowledge of a programming language, preferably Python and Modelica
  • Interest in topics of energy engineering and building simulation
  • Knowledge in one of the fields of modeling or control of technical systems beneficial
  • Independent working style and good analytical skills
  • Willingness to familiarize yourself with new methods
  • Reliable and conscientious style of working
  • Fluent in English (spoken and written)

Our Offer:

We work on the very latest issues that impact our society and are offering you the chance to actively help in shaping the change! We support you in your work with:

  • Highly motivated scientists of different subject areas working together
  • Interdisciplinary work combining physics, mathematics, computer science, and engineering
  • Intensive supervision by one or more experienced and helpful colleague(s)
  • Friendly and welcoming work environment
  • A diverse and highly motivated working group of international character within one of the largest research institutions in Europe
  • An excellent scientific and technical infrastructure
  • Excellent technical equipment to successfully work from home
  • Flexible working hours as well as a reasonable remuneration

We welcome applications from people with diverse backgrounds, in terms of age, gender, disability, sexual orientation / identity, and social, ethnic and religious origin. A diverse and inclusive working environment with equal opportunities in which everyone can realize their potential is important to us.

We look forward to receiving your application. The job will be advertised until the position has been successfully filled. You should therefore submit your application as soon as possible.

Hol dir deinen kostenlosen, vertraulichen Lebenslauf-Check.
eine PDF-, DOC-, DOCX-, ODT- oder PAGES-Datei bis zu 5 MB per Drag & Drop ablegen.