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STATUS OF NEUTRON BEAM UTILIZATION AT THE DALAT NUCLEAR RESEARCH REACTOR

机译:大叻核研究反应堆中子束利用的现状

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The 500-kW Dalat nuclear research reactor was reconstructed from the USA-made 250-kW TRIGA Mark II reactor. After completion of renovation and upgrading, the reactor has been operating at its nominal power since 1984. The reactor is used mainly for radioisotope production, neutron activation analysis, neutron beam researches and reactor physics study. In the framework of the reconstruction and renovation project of the 1982-1984 period, the reactor core, the control and instrumentation system, the primary and secondary cooling systems, as well as other associated systems were newly designed and installed by the former Soviet Union. Some structures of the reactor, such as the reactor aluminum tank, the graphite reflector, the thermal column, horizontal beam tubes and the radiation concrete shielding have been remained from the previous TRIGA reactor. As a typical configuration of the TRIGA reactor, there are four neutron beam ports, including three radial and one tangential. Besides, there is a large thermal column. Until now only two-neutron beam ports and the thermal column have been utilized. Effective utilization of horizontal experimental channels is one of the important research objectives at the Dalat reactor. The research program on effective utilization of these experimental channels was conducted from 1984. For this purpose, investigations on physical characteristics of the reactor, neutron spectra and fluxes at these channels, safety conditions in their exploitation, etc. have been carried out. The neutron beams, however, have been used only since 1988. The filtered thermal neutron beams at the tangential channel have been extracted using a single crystal silicon filter and mainly used for prompt gamma neutron activation analysis (PGNAA), neutron radiography (NR) and transmission experiments (TE). The filtered quasi-monoenergetic keV neutron beams using neutron filters at the piercing channel have been used for nuclear data measurements, study on radiation hardness of electronics components, and other researches. Because of lacking of budget, another two beam tubes are still empty and we have no chance to set up some other facilities for neutron beam study, such as small angle neutron scattering (SANS) facility, neutron diffractometers at the beam tubes, as well as boron neutron capture therapy (BNCT) facility at the thermal column. This report presents the status of neutron beam facility at the Dalat reactor and its utilization for some typical research activities. An outlook on possibility for participation in the FNCA co-operation program on the utilization of the research reactors has also been given.
机译:从美国制造的250千瓦Triga Mark II反应器重建了500千瓦Dalat核研究反应器。完成翻新和升级后,反应器自1984年以来一直在其标称功率运行。反应器主要用于放射性同位素生产,中子激活分析,中子束研究和反应堆物理研究。在1982年至1984年期间的重建和装修项目的框架中,反应堆芯,控制和仪表系统,初级和二次冷却系统以及前苏联新设计和安装的其他相关系统。反应器的一些结构,例如反应器铝罐,石墨反射器,热柱,水平梁管和辐射混凝土屏蔽已从先前的Triga反应器中留下。作为Triga反应器的典型配置,存在四个中子束端口,包括三个径向和一个切线。此外,有一个大的热柱。到目前为止,只有两个中子束端口和热柱。水平实验通道的有效利用是Dalat反应器的重要研究目标之一。从1984年进行了有效利用这些实验通道的研究计划。为此目的,已经进行了对这些通道,中子谱和通孔的助熔剂的物理特性的研究,已经进行了剥削的安全条件等。然而,仅仅自1988年以来仅使用了中子束。使用单晶硅滤光器提取切向通道处的过滤的热中子束,主要用于提示伽马中子激活分析(PGNA),中子放射照相(NR)和传输实验(TE)。在穿孔通道上使用中子滤波器的过滤的准单元素kev中子束已被用于核数据测量,电子元件的辐射硬度以及其他研究。由于缺乏预算,另外两个梁管仍然是空的,我们没有机会为中子束研究设置一些其他设施,例如小角度中子散射(SAN)设施,中子衍射计在梁管上,以及硼中子捕获治疗(BNCT)设施在热柱。本报告介绍了Dalat反应堆中子束设施的状态及其对一些典型研究活动的利用。还给出了参与FNCA合作方案对利用研究反应堆的可能性的展望。

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