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Design and Characterization of Next-Generation Tissue Equivalent Proportional Counters for use in Low Energy Neutron Fields.

机译:用于低能中子领域的下一代组织当量比例计数器的设计与表征。

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摘要

Tissue Equivalent Proportional Counters (TEPCs) are devices that can measure the radiation dose levels for the mixed neutron and gamma ray fields that are encountered in nuclear facilities. TEPC designs typically consist of a low density gas sensitive volume surrounded by a solid wall, each of which is composed of tissue-equivalent material. The response of a TEPC in a radiation field is characterized by two quantities: the sensitivity, defined as the ratio of the counts recorded to the measured dose equivalent, and the dose equivalent energy response, defined as the ratio of the measured dose equivalent to the ambient dose equivalent for the radiation field of a given energy. TEPC technology has great potential for use in low energy neutron fields, such as those in nuclear power plants, however, what hinders its use as a portable area monitor in such fields is its large physical size.;For any given neutron field, an optimized TEPC design is one that can provide the same or better sensitivity and dose equivalent energy response relative to that offered by a standard spherical TEPC design of five inch diameter albeit with a much smaller physical size to allow for portability. Two optimized TEPC instruments have been designed: the Compact Multi-Element Tissue Equivalent Proportional Counter (CMETEPC), consisting of 113 cylindrical gas sensitive volumes, and the one-quarter inch TEPC-based system (QITEPC), consisting of 392 spherical TEPCs. These instruments are approximately 90% smaller than the standard counter design. To verify that these optimized counters offer the same or better sensitivity and dose equivalent energy response relative to the standard design for realistic nuclear power plant neutron fields, the performance of these instruments when irradiated by the 252Cf -- D2O moderated, 252Cf, and 241Am-Be neutron energy spectra were simulated using the Particle and Heavy Ion Transport Code System (PHITS) three-dimensional radiation transport code. For these fields, it is found that the two instruments do offer the same or better sensitivity and dose equivalent response than the standard counter design. The process of designing the optimized instruments as well as the directional dependence of these instruments' sensitivity and dose equivalent energy response for each of the three abovementioned neutron fields will be presented. This ii thesis presents two novel compact designs for TEPCs that may be suitable for use in area monitoring applications.
机译:组织等效比例计数器(TEPC)是可以测量核设施中遇到的混合中子和伽马射线场的辐射剂量水平的设备。 TEPC设计通常包括一个低密度的气体敏感体积,该体积被实心壁包围,每个实心壁均由组织等效材料组成。 TEPC在辐射场中的响应由两个量来表征:灵敏度(定义为记录的计数与测量的剂量当量之比)和剂量当量能量响应(定义为测量的剂量与剂量当量之比)。给定能量的辐射场的等效环境剂量。 TEPC技术在核能电厂等低能中子领域具有巨大的应用潜力,但是,由于其物理尺寸过大,阻碍了其在便携式领域中的应用。与具有五英寸直径的标准球形TEPC设计所提供的灵敏度和剂量当量能量响应相比,TEPC设计可以提供相同或更好的灵敏度和剂量当量能量响应,尽管其物理尺寸要小得多,以便于携带。设计了两种优化的TEPC仪器:紧凑的多元素组织当量比例计数器(CMETEPC),由113个圆柱形气体敏感体积组成;以及四分之一英寸的基于TEPC的系统(QITEPC),由392个球形TEPC组成。这些仪器比标准计数器设计小大约90%。为了验证这些优化的计数器相对于现实核电站中子场的标准设计提供了相同或更好的灵敏度和剂量当量能量响应,这些仪器在252Cf-D2O缓和,252Cf和241Am-辐照下的性能使用粒子和重离子传输代码系统(PHITS)三维辐射传输代码模拟中子能谱。对于这些领域,发现这两种仪器确实提供了比标准计数器设计相同或更好的灵敏度和等效剂量响应。将介绍针对上述三个中子场中的每一个,设计优化仪器的过程以及这些仪器灵敏度和剂量当量能量响应的方向依赖性。本论文提出了两种适用于TEPC的新颖紧凑设计,它们可能适用于区域监测应用。

著录项

  • 作者

    Ali, Fawaz.;

  • 作者单位

    University of Ontario Institute of Technology (Canada).;

  • 授予单位 University of Ontario Institute of Technology (Canada).;
  • 学科 Engineering Nuclear.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 470 p.
  • 总页数 470
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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