2008
DOI: 10.1016/j.nucengdes.2007.11.006
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The MEGAPIE-TEST project: Supporting research and lessons learned in first-of-a-kind spallation target technology

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Cited by 65 publications
(23 citation statements)
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“…230 ∘ C [11] and finally returned to the nuclear reaction zone. In the topmost part of the target, the LBE loop was connected to an expansion volume, where the liquid metal was in contact with a cover gas (Ar).…”
Section: Irradiationmentioning
confidence: 98%
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“…230 ∘ C [11] and finally returned to the nuclear reaction zone. In the topmost part of the target, the LBE loop was connected to an expansion volume, where the liquid metal was in contact with a cover gas (Ar).…”
Section: Irradiationmentioning
confidence: 98%
“…At the beam entry with the highest proton density the LBE was heated by the proton beam to about 340 ∘ C to 350 ∘ C [11,12]. From this nuclear reaction zone, the liquid metal moved upwards through the electromagnetic pump until it was diverted close to the top of the target (segment H07) to flow down again through the heat exchanger,…”
Section: Irradiationmentioning
confidence: 99%
“…Computational Fluid Dynamics (CFD) tools are commonly used for the thermal and hydraulic design of facilities operating with liquidmetal, e.g., MYRRHA [17], ESS [18] and EURISOL [8,19]. Furthermore, important aspects of CFD analysis such as the turbulence modeling, pressure field and pressure drop in a liquid-metal flow have been validated in the framework of thermal-hydraulics design of the MEGAPIE LBE target [8,19].…”
Section: Methodsmentioning
confidence: 99%
“…Furthermore, important aspects of CFD analysis such as the turbulence modeling, pressure field and pressure drop in a liquid-metal flow have been validated in the framework of thermal-hydraulics design of the MEGAPIE LBE target [8,19]. These tools are less expensive and faster to implement for a design-optimization procedure than prototyping each optimization step.…”
Section: Methodsmentioning
confidence: 99%
“…Moreover, an extensive Post Irradiation Examinations (PIE) programme, taking advantage of ongoing irradiation experiments (see e.g. [8,9]) will contribute to the assessment of the two classes of materials. Finally, an important part of the GETMAT project is dedicated to the fundamental understanding of the physical mechanisms that are the basis of the materials behaviour under irradiation through multi-scale modelling activities and experimental validation.…”
Section: Innovative Nuclear Systems and Materials Issuesmentioning
confidence: 99%