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At ETH Zurich, Prof. Prasser continued working primarily in the field of thermal fluid dynamics in the context of nuclear facilities. Further innovative measurement methods for various applications emerged, such as high speed measurement of liquid film thickness distributions, using either conductivity probes or the attenuation of infrared radiation. Under his leadership, the Paul Scherrer Institute developed a deuterium-deuterium plasma neutron source that is suitable for fast neutron imaging. The laboratory of Prof. Prasser provided contributions to the development of CFD codes used to describe single and two-phase flow phenomena in fuel elements of nuclear reactors, while also providing experimental results for the validation of such models. One focus was on the detailed description of liquid films in modern fuel assemblies of boiling water reactors. Other fields of activity were in the area of containment thermal-hydraulics, e.g. work on the distribution of hydrogen in severe accident scenarios and filtered containment pressure relief.
Prof. Prasser played a key role in establishing the “Nuclear Engineering” master's degree, which has been offered jointly with EPF Lausanne since 2008.
研究兴趣
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INTERNATIONAL JOURNAL OF MULTIPHASE FLOW (2023): 104382-104382
International Journal of Heat and Mass Transfer (2023): 124176-124176
NUCLEAR ENGINEERING AND DESIGN (2023): 112253-112253
arxiv(2022)
Applied radiation and isotopes : including data, instrumentation and methods for use in agriculture, industry and medicine (2021): 109715-109715
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