首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Filtered fast neutron irradiation system using Texas A&M University Nuclear Science Center Reactor
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Filtered fast neutron irradiation system using Texas A&M University Nuclear Science Center Reactor

机译:使用德州农工大学核科学中心反应堆的过滤快中子辐照系统

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摘要

A heavily filtered fast neutron irradiation system (FNIS) was developed for a variety of applications, including the study of long-term health effects of fast neutrons by evaluating the biological mechanisms of damage in cultured cells and living animals such as rats or mice. This irradiation system includes an exposure cave made with a lead-bismuth alloy, a cave positioning system, a gamma and neutron monitoring system, a sample transfer system, and interchangeable filters. This system was installed in the irradiation cell of the Texas A&M University Nuclear Science Center Reactor (NSCR). For a realistic modeling of the NSCR, the irradiation cell, and the FNIS, this study used the Monte Carlo N-Particle (MCNP) code and a set of high-temperature ENDF/B-VI continuous neutron cross-section data. Sensitivity analysis was performed to find the characteristics of the FNIS as a function of the thickness of the lead-bismuth alloy. A paired ion chamber system was constructed with a tissue-equivalent plastic (A-150) and propane gas for total dose monitoring and with graphite and argon for gamma dose monitoring. This study, in addition, tested the Monte Carlo modeling of the FNIS system, as well as the performance of the system by comparing the calculated results with experimental measurements using activation foils and paired ion chambers.
机译:开发了适用于多种应用的重过滤快中子辐照系统(FNIS),包括通过评估培养细胞和活体动物(如大鼠或小鼠)的损伤生物学机制来研究快中子的长期健康影响。该辐照系统包括一个由铅-铋合金制成的暴露洞穴,一个洞穴定位系统,一个伽玛和中子监测系统,一个样品传输系统以及可互换的过滤器。该系统安装在德克萨斯农工大学核科学中心反应堆(NSCR)的辐照室中。为了对NSCR,辐照室和FNIS进行逼真的建模,本研究使用了蒙特卡罗N粒子(MCNP)代码和一组高温ENDF / B-VI连续中子截面数据。进行了灵敏度分析,以发现FNIS的特性随铅-铋合金厚度的变化而变化。用等效于组织的塑料(A-150)和丙烷气体构建了一个成对的离子室系统,以监测总剂量,并使用石墨和氩气构建了一个γ剂量监测器。此外,这项研究通过将计算结果与使用活化箔和成对离子室的实验测量结果进行比较,测试了FNIS系统的Monte Carlo建模以及系统的性能。

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