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Validation of electro-thermal simulation with experimental data to prepare online operation of a molten salt target at ISOLDE for the Beta Beams

机译:用实验数据验证电热仿真,以准备在ISOLDE上为Beta射线在线操作熔盐靶

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The main objective of the Beta Beams is to study oscillation property of pure electrons neutrinos. It produces high energy beams of pure electron neutrinos and anti-neutrinos for oscillation experiments by beta decay of ~6He and ~ (18)Ne radioactive ion beams, stored in a decay ring at γ = 100. The production of ~6He beam has already been accomplished using a thick beryllium oxide target. However, the production of the needed rate of ~ (18)Ne has proven to be more challenging. In order to achieve the requested yield for ~(18)Ne a new high power target design based on a circulating molten salt loop has been proposed. To verify some elements of the design, a static molten salt target prototype has been developed at ISOLDE and operated successfully. This paper describes the electro-thermal study of the molten salt target taking into account the heat produced by Joule effect, radiative heat exchange, active water cooling due to forced convection and air passive cooling due to natural convection. The numerical results were compared with the available experimental data in order to validate the model. This approach allows one to improve the reliability of the model, which will help to predict the thermo-mechanical impact of the required targets for future facilities such as HIE-ISOLDE and the Beta-Beams.
机译:Beta电子束的主要目的是研究纯电子中微子的振荡特性。它通过〜6He和〜(18)Ne放射性离子束的β衰变,产生纯电子中微子和反中微子的高能束用于振荡实验,并存储在γ= 100的衰变环中。〜6He束已经产生使用厚氧化铍靶完成。然而,已证明所需的〜(18)Ne速率的生产更具挑战性。为了达到〜(18)Ne所需的产量,已经提出了一种基于循环熔盐回路的新型高功率靶设计。为了验证设计的某些要素,已经在ISOLDE开发了静态熔盐目标原型并成功运行。本文介绍了熔盐靶的电热研究,其中考虑了焦耳效应产生的热量,辐射热交换,强制对流导致的主动水冷却以及自然对流引起的空气被动冷却。将数值结果与可用的实验数据进行比较,以验证模型。这种方法可以提高模型的可靠性,这将有助于预测所需目标对未来设施(如HIE-ISOLDE和Beta-Beams)的热机械影响。

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