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Development and test of a cryogenic trap system dedicated to confinement of radioactive volatile isotopes in SPIRAL2 post-accelerator

机译:致力于限制SPIRAL2后加速器中放射性挥发性同位素限制的低温阱系统的开发和测试

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摘要

A cryogenic trap system called Cryotrap has been studied and developed in the framework of nuclear safety studies for SPIRAL2 accelerator. The main objective of Cryotrap is to confine and reduce strongly the migration of radioactive volatile isotopes in beam lines. These radioactive gases are produced after interaction between a deuteron beam and a fissile target. Mainly, Cryotrap is composed by a vacuum vessel and two copper thermal screens maintained separately at two temperatures T_1=SOK and T_2=20 K. A Cryocooler with two stages at previous temperatures is used to remove static heat losses of the cryostat and ensure an efficient cooling of the system. Due to strong radiological constraints that surround Cryotrap, the coupling system between Cryocooler and thermal screens is based on aluminum thermo-mechanical contraction. The main objective of this original design is to limit direct human maintenance interventions and provide maximum automated operations. A preliminary prototype of Cryotrap has been developed and tested at GANIL laboratory to validate its design, and determine its thermal performance and trapping efficiency. In this paper, we will first introduce briefly SPIRAL2 project and discuss the main role of Cryotrap in nuclear safety of the accelerator. Then, we will describe the proposed conceptual design of Cryotrap and its main characteristics. After that, we will focus on test experiment and analyze experimental data. Finally, we will present preliminary results of gas trapping efficiency tests.
机译:已经在针对SPIRAL2加速器的核安全研究框架内研究并开发了一种称为Cryotrap的低温阱系统。低温阱的主要目的是限制并强烈减少射线束中放射性挥发性同位素的迁移。这些放射性气体是在氘核束和易裂变目标相互作用后产生的。低温捕集器主要由一个真空容器和两个分别保持在两个温度T_1 = SOK和T_2 = 20 K的铜质热屏组成。使用一个在先前温度下具有两级的低温冷却器来消除低温恒温器的静态热损耗并确保高效系统冷却。由于围绕低温阱的放射学约束很强,因此低温冷却器和热屏之间的耦合系统是基于铝的热机械收缩的。此原始设计的主要目的是限制直接的人工维护干预并提供最大程度的自动化操作。已在GANIL实验室开发并测试了Cryotrap的初步原型,以验证其设计并确定其热性能和捕集效率。在本文中,我们将首先简要介绍SPIRAL2项目,并讨论Cryotrap在加速器核安全中的主要作用。然后,我们将描述拟议的低温阱概念设计及其主要特征。之后,我们将专注于测试实验并分析实验数据。最后,我们将介绍气体捕集效率测试的初步结果。

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    Grand Accelerateur National d'lons Lourds (GAN1L), CEA/DSM, CNRS/1N2P3, Bd. Henri Becquerel, BP 55027, 14076 CAEN CEDEX 5, France;

    Grand Accelerateur National d'lons Lourds (GAN1L), CEA/DSM, CNRS/1N2P3, Bd. Henri Becquerel, BP 55027, 14076 CAEN CEDEX 5, France;

    Grand Accelerateur National d'lons Lourds (GAN1L), CEA/DSM, CNRS/1N2P3, Bd. Henri Becquerel, BP 55027, 14076 CAEN CEDEX 5, France;

    Grand Accelerateur National d'lons Lourds (GAN1L), CEA/DSM, CNRS/1N2P3, Bd. Henri Becquerel, BP 55027, 14076 CAEN CEDEX 5, France;

    Grand Accelerateur National d'lons Lourds (GAN1L), CEA/DSM, CNRS/1N2P3, Bd. Henri Becquerel, BP 55027, 14076 CAEN CEDEX 5, France;

    Grand Accelerateur National d'lons Lourds (GAN1L), CEA/DSM, CNRS/1N2P3, Bd. Henri Becquerel, BP 55027, 14076 CAEN CEDEX 5, France;

    Grand Accelerateur National d'lons Lourds (GAN1L), CEA/DSM, CNRS/1N2P3, Bd. Henri Becquerel, BP 55027, 14076 CAEN CEDEX 5, France;

    Institut de Physique Nucleate d'Orsay (IPNO), CNRS/IN2P3, 15 rue Georges CLEMENCEAU 91406 ORSAY, France;

    Institut de Physique Nucleate d'Orsay (IPNO), CNRS/IN2P3, 15 rue Georges CLEMENCEAU 91406 ORSAY, France;

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  • 正文语种 eng
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  • 关键词

    cryotrapping system; confinement of radioactive volatile; isotopes; thermal coupling;

    机译:冷冻捕获系统;限制放射性挥发物;同位素热耦合;

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