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TRADE实验:次临界系统所在建筑的屏蔽计算

The TRADE experiment: shielding calculations for the building hosting the subcritical system.

作者信息

Burn K W, Carta M, Casalini L, Kadi Y, Monti S, Nava E, Palomba M, Petrovich C, Picardi L, Rubbia C, Troiani F

机构信息

ENEA FIS-NUC, Via M. Monte Sole 4, 40129 Bologna, Italy.

出版信息

Radiat Prot Dosimetry. 2005;115(1-4):187-94. doi: 10.1093/rpd/nci219.

Abstract

The TRADE project (TRiga Accelerator Driven Experiment), to be performed at the existing TRIGA reactor at ENEA Casaccia, has been proposed as a validation of the accelerator-driven system (ADS) concept. TRADE will be the first experiment in which the three main components of an ADS--the accelerator, spallation target and sub-critical blanket--are coupled at a power level sufficient to encounter reactivity feedback effects. As such, TRADE represents the necessary intermediate step in the development of hybrid transmutation systems, its expected outcomes being considered crucial--in terms of proof of stability of operation, dynamic behaviour and licensing issues--for the subsequent realisation of an ADS Transmutation Demonstrator. An essential role in the feasibility study of the experiment is played by radioprotection calculations. Such a system exhibits new characteristics with respect to a traditional reactor, owing to the presence of the proton accelerator. As beam losses always occur under normal operating conditions of an accelerator, shielding studies need to be performed not only around the reactor but also along the beam line from the accelerator to the spallation target. This paper illustrates a preliminary evaluation, using Monte Carlo methods, of the additional shielding to be located around the reactor structures, the beam transport line and the existing reactor building to allow access into the reactor hall and to restrict the doses outside to their legal limits.

摘要

TRADE项目(TRiga加速器驱动实验)计划在位于意大利国家新技术、能源和可持续经济发展局卡恰西亚研究中心的现有TRIGA反应堆上进行,该项目被提议用于验证加速器驱动系统(ADS)概念。TRADE将是首个把ADS的三个主要部件——加速器、散裂靶和次临界包层——在足以产生反应性反馈效应的功率水平下进行耦合的实验。因此,TRADE代表了混合嬗变系统发展中必要的中间步骤,其预期成果对于后续实现ADS嬗变示范装置在运行稳定性证明、动态行为和许可问题方面被认为至关重要。辐射防护计算在该实验的可行性研究中发挥着重要作用。由于质子加速器的存在,这样一个系统相对于传统反应堆呈现出一些新特性。因为在加速器正常运行条件下总会发生束流损失,所以不仅需要在反应堆周围进行屏蔽研究,还需要沿着从加速器到散裂靶的束流线进行屏蔽研究。本文阐述了使用蒙特卡罗方法对围绕反应堆结构、束流传输线和现有反应堆厂房设置额外屏蔽进行的初步评估,以便能够进入反应堆大厅并将外部剂量限制在法定限值以内。

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