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High-power TR-24 cyclotron-based p-n convertor cooled by submerged orifice jet

机译:基于高功率的TR-24基于回旋的O-N转换通过浸没式孔口射流冷却

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The TR-24 cyclotron (Advanced Cyclotron Systems Inc., Canada) of the Nuclear Physics Institute in ?e? provides protons with variable energies from 18 MeV up to 24 MeV and beam current of 0.3 mA. For such parameters, the p~(+)Be source reaction on thick Be target can produce a white-spectrum neutron field (E_(n)≤ 22 MeV) with the intensity of 5×10~(12)n/s/sr in forward direction. Present paper outlines the development of Be-target cooling system, devoted to remove the heat load of 7 kW (density up to 4 kW/cm~(2)) from the target. Due to novel “orifice-form“ of jet cooling (resulting in the shortest source-to- sample distance of 20 mm) with extremely high cooling efficiency, the TR-24 p-n convertor can achieve neutron-flux up to 2×10~(12)n/cm~(2)/s nearby the target output.
机译:TR-24 Cyclotron(Advanced Cyclotron Systems Inc.,加拿大)的核物理研究所在吗?E?提供具有18 MeV可变能量的质子,高达24 MeV,光束电流为0.3 mA。对于这样的参数,P〜(+)是厚度目标的源反应可以产生白色谱中子场(E_(n)≤22mev),强度为5×10〜(12)n / s / sr向前方向。本文概述了致力于从靶标中除去7 kW的热负荷(密度高达4kW / cm〜(2))的热负荷。由于喷射冷却的新颖“孔口”(导致最短的源点到样本距离为20 mm),具有极高的冷却效率,TR-24 PN转换器可实现最高可达2×10〜( 12)N / cm〜(2)/ s附近的目标输出。

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