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TNO zoekt een gemotiveerde MSc-student voor een stage/afstudeerproject gericht op de integratie van SMRs en grote kernreactoren in het toekomstige elektriciteitsnet, met focus op congestiebeheer en systeemwaarde.
Je zult computationele modellering en simulaties doen in samverwerking met renewables, elektrificatie en industriële vraag, met bijzondere aandacht voor de Rotterdam-regio. Interesse in energietechniek en kernenergie is vereist.
Do you want to contribute to the energy transition by analysing how Small Modular Reactors (SMRs) and large nuclear reactors can be integrated into a congested, renewable-heavy power grid?
SMRs are increasingly recognised as a promising technology to support reliable, low‑carbon energy systems. Unlike conventional large nuclear power plants, SMRs offer greater operational flexibility and can adapt their electricity and heat output to changing system conditions. This flexibility allows nuclear generation to complement intermittent renewable sources such as wind and solar, while contributing to grid stability and industrial decarbonisation.
As new nuclear capacity is added to the grid, understanding its interaction with network constraints becomes essential. Nuclear generation, in both baseload and flexible modes, can influence congestion patterns, system stability, and the need for network reinforcements. Through capabilities such as load‑following, frequency regulation, and voltage support, nuclear plants can help manage congestion and stabilise prices, particularly when coupled with storage or hydrogen production. Mapping these effects at the high‑voltage level, and comparing how SMRs and large reactors each perform under different grid and market conditions, is a key step towards designing a robust nuclear deployment strategy.
In this internship/thesis project, you will investigate how SMRs and large nuclear reactors can be integrated into the future electricity grid, with a focus on grid congestion management and system‑level value. Your work will combine power‑system analysis with the flexibility characteristics of nuclear generation.
You will explore how nuclear plants can provide flexibility services, load‑following, frequency and voltage support, while interacting with renewable generation, electrification, and industrial energy demand. Particular attention will be given to grid congestion in key regions and to the role of nuclear in supporting the electrification of industrial clusters such as the Rotterdam area.
The project will include one or more of the following research directions:
We are looking for a motivated M.Sc. Student with a strong interest in electrical power systems, grid integration, and nuclear energy. This internship is particularly suitable for students who enjoy combining theoretical research with practical modelling and simulation work.
We also expect:
An internship at TNO means working in an environment where substance and impact are central. You will become part of a knowledge organisation where research and practice come together, and where experts collaborate on solutions to current societal and technological challenges.
Your internship is a period in which you can discover what suits you, where your strengths lie and what you would like to learn next. You are part of a professional working environment, gain insight into how things work in practice, and have the opportunity to build experience that goes beyond this internship alone. For many students, an internship is therefore also a first step in discovering whether TNO could be a potential next step after graduation.
In addition, we offer you:
Our people are at the heart of TNO. Their curiosity, expertise and entrepreneurial mindset make it possible to deliver high‑impact research and innovations that contribute to society’s sustainable wellbeing and prosperity. That is why we invest in an inspiring and inclusive working environment where colleagues can excel, have autonomy and continue to grow.
Your talent and ambition have every opportunity to flourish at TNO. You work with experts (both within and beyond TNO), have access to advanced technology and the freedom to explore, experiment and innovate. Our strength lies in independence, reliability and collaboration. We find each other in wonder and ingenuity. We are driven to push boundaries. By working with businesses and government, and by connecting different perspectives, we strengthen our innovative capability and create responsible, meaningful results.
At TNO, we believe this is our time to help society, government and business move forward faster. Together with driven colleagues, you turn knowledge into concrete innovations or ventures that truly make a difference by combining the power of science and entrepreneurship. And in doing so, you make your mark on our time.
You can apply for this internship position until the 28th of August, 2026. After submitting your application, you will receive a confirmation by email.
TNO will arrange an appropriate internship agreement. If you have any questions about the content of the internship or the application procedure, you can contact the person listed below.
If you start an internship with us, we will also ask you to provide a Certificate of Conduct (VOG).
Before the start of the internship, an internship agreement must be signed. For students enrolled at a Dutch university or university of applied sciences, TNO uses the UNL-template , supplemented with several TNO-specific agreements. For students from foreign educational institutions and MBO (secondary vocational education) programmes, the TNO internship agreement applies. TNO does not sign any other internship agreements.
Before the start of the internship, the educational institution will need to confirm in writing that:
The confirmation of educational institution takes place by signing the UNL template or forms prepared by TNO.
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