Kurse

Dies ist der ISIS Kurs für die Gruppe "Energie-Krise - Gaseinsparungspotentiale in der Industrie" der PIW.
- Trainer/in: Thomas William Brown
- Trainer/in: Marik Fabian Hofmann
- Trainer/in: Elisabeth Zeyen
- Trainer/in: Thomas William Brown
- Trainer/in: Philipp Glaum
- Trainer/in: Gunnar Godwin Luderer
- Trainer/in: Iegor Riepin
- Trainer/in: Thomas William Brown
- Trainer/in: Philipp Glaum
- Trainer/in: Fabian Neumann
- Trainer/in: Iegor Riepin
- Trainer/in: Elisabeth Zeyen
- Trainer/in: Thomas William Brown
- Trainer/in: Philipp Glaum
- Trainer/in: Marik Fabian Hofmann
- Trainer/in: Fabian Neumann
- Trainer/in: Christoph Tries
- Trainer/in: Elisabeth Zeyen
Wirtschaftswissenschaftliche Grundlagen für Studierende der Ingenieurwissenschaften (6 LP)
Lernergebnisse
Lehrinhalte
Link zu MTS
- Trainer/in: Thomas William Brown
- Trainer/in: Philine Alexandra Burkhardt
- Trainer/in: Philipp Glaum
- Trainer/in: Tom Kähler
- Trainer/in: Arne Kaschubowski
- Trainer/in: Fabian Neumann
- Trainer/in: Marie Sophie Schubert
- Trainer/in: Franka Marie Von Tluck und Toschonowitz
- Trainer/in: Elisabeth Zeyen
This module will cover the modelling and analysis of future energy systems, with a focus on renewable energy resources and how storage and network infrastructures can aid their integration into the energy system. Directly from the start of the course, students will be exposed to working with real data regarding historical weather data, land eligibility constraints, existing power plant fleets, transmission network data, electricity markets, and demand time series to learn about the challenges and solutions for a successful transition towards climate-neutral energy systems across the globe.
Topics of the course include:
- Time series analysis of wind and solar generation and energy demands.
- GIS-based evaluation of renewable energy potentials.
- Modelling of daily and seasonal energy storage. - Modelling of power flows and transmission networks.
- Introduction to mathematical optimization (or repetition thereof).
- Electricity market designs with renewable electricity (merit order, market values, re-dispatch, nodal pricing)
- System planning of renewables deployment, energy storage and transmission infrastructure.
- Modelling of sector-coupling and demand-side management (examples from industry, buildings or transport).
- Modelling under uncertainty and methods of complexity reduction. - Programming of energy system models in Python (e.g. pandas, geopandas, PyPSA and atlite).
- Visualization and communication of energy system analysis.
https://moseskonto.tu-berlin.de/moses/modultransfersystem/bolognamodule/beschreibung/anzeigen.html?number=31027&version=1&sprache=2
- Trainer/in: Thomas William Brown
- Trainer/in: Philipp Glaum
- Trainer/in: Fabian Neumann