TFNE3008

Energy storage

Last taught 2021

Autumn

Trondheim

English

Overview

5 candidates

Pass rate

100%

same

Grade distribution
Average over time
Pass rate over time

About this course

Content

Management and storage of heat, mechanical, and electrical energy.
Market, research, and application aspects (eg. Smart-grid, off-grid, Ragone plot, buffer concepts).
Thermal energy storage, heat reservoirs, phase transition utilization and chemically bound heat (eg. A district heating network solfanget heat).
Mechanical energy storage: Spin Wheels, pumps, turbines and heat recovery (eg. Air compression pump power, spin wheels in various sizes.).
Electrochemical storage of electrical energy: Important battery technologies and hydrogen technologies (excl. Lead batteries, various Li-ion batteries, unlike electrolysis of water, different hydrogen storage, and various fuel cells).

Learning outcomes

Knowledge
The candidate must understand
- Concept and operation of available and relevant energy storage systems.
- Comparison tools used in system evaluation.
- Different needs within energy storage.
- Cause and propagation of efficiency losses in various energy storage systems.

Skills
Candidates is expected to be able to
- Explain the concept and operation of available and relevant energy storage systems.
- Calculating the efficiency of charging cycles for different energy storage systems.
- Design energy and power needs of simple hybrid systems based on output and energy capacity.

General competence
- The candidate is expected to manage basic principles for accessible and relevant energy storage systems and quantitatively and qualitatively be able to compare these.

Teaching methods

Lectures, tutorials, and laboratory exercises.