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March 29, 2026Поверхность Рентгеновские синхротронные и нейтронные исследования / Journal of Surface Investigation X-Ray Synchrotron and Neutron Techniques0 citations

Rotating Water-Jet-Cooled Target for Compact Neutron Source

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PSP.V. ShvetsPPP.A. ProkopovichEFE.I. Fatyanov

Key Points

  • This research aims to improve the cooling efficiency of rotating water-cooled beryllium targets in compact neutron sources.
  • Developed a jet cooling concept for water flow over beryllium surfaces.
  • Conducted thermodynamical numerical simulations to determine maximum target temperatures and water pressures.
  • Compared new cooling methods to previous designs to evaluate improvements.
  • Demonstrated significant enhancement in cooling efficiency compared to prior methods.
  • Achieved improved heat dissipation with lower water flow requirements.
  • Reduced the risk of damage to beryllium segments during operation.

Abstract

Compact neutron sources, including those based on bombardment of beryllium by a proton beam (for instance, DARIA project), assume using of targets with high thermal loading (~10 kW). To dissipate this heating power, we previously developed a concept of a rotating water-cooled target. Each proton pulse hit a new beryllium plate allowing distributing heating power over a large area and achieving good heat removal from the system. However, the cooling was not ideal; high water flow was required leading to significant pressures near beryllium segments and creating a threat of their destruction during the operation of the device. Here, we consider a new and more efficient concept of water cooling suggesting that water flows normally to the cooled surfaces (jet cooling). Thermodynamical numerical simulations allowed us to estimate maximum temperature of targets and water pressure near the beryllium segments depending on the cooling water flow. We showed a significant improvement of all parameters of the device compared to the old concept of target assembly.

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Cite This Study

Shvets et al. (2025) studied this question.

synapsesocial.com/papers/69c8c28cde0f0f753b39ce95https://doi.org/10.7868/s3034573125050043
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