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Multi-anode wire two dimensional proportional counter for detecting Iron-55 X-Ray Radiation.

机译:用于检测Iron-55 X射线辐射的多阳极导线二维比例计数器。

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摘要

Radiation detectors in many applications use small sensor areas or large tubes which only collect one-dimensional information. There are some applications that require analyzing a large area and locating specific elements such as contamination on the heat tiles of a space shuttle or features on historical artifacts. The process can be time consuming and scanning a large area in a single pass is beneficial. The use of a two dimensional multi-wire proportional counter provides a large detection window presenting positional information in a single pass. This thesis described the design and implementation of an experimental detector to evaluate a specific design intended for use as a handheld instrument.;With the anode wire spacing chosen and the minimal collimation of the radiation source, detected events occurred all over the detection grid at any time. The raw event data did not make determining the source position easy and further data correlation was required. An abundance of samples had multiple wire hits which were not useful because it falsely reported the source to be all over the place and at different energy levels. By narrowing down the results to only use the largest signal pairs on different axes in each event, a much more accurate analysis of where the source existed above the grid was determined. The basic principle and construction method was shown to work, however the gas selection, geometry and anode wire constructs proved to be poor. To provide a system optimized for a specific application would require detailed Monte Carlo simulations. These simulation results together with the details and techniques implemented in this thesis would provide a final instrument of much higher accuracy.;The main effort of this research was to custom build a detector for testing purposes. The aluminum chamber and all circuit boards were custom designed and built specifically for this application. Various software and programmable logic algorithms were designed to analyze the raw data in real time and attempted to determine what data was useful and what could be discarded. The research presented here provides results useful for designing an improved second generation detector in the future.
机译:在许多应用中,辐射探测器使用的传感器面积较小或较大的管仅收集一维信息。在某些应用中,需要分析大面积并定位特定元素,例如航天飞机热砖上的污染物或历史文物上的特征。该过程可能很耗时,单次扫描大面积区域是有益的。二维多线比例计数器的使用提供了一个大的检测窗口,可在单次通过中显示位置信息。本文描述了一种实验检测器的设计和实现,以评估打算用作手持式仪器的特定设计。通过选择阳极线间距和辐射源的最小准直,在任何位置的整个检测网格上都会发生检测到的事件时间。原始事件数据无法轻松确定源位置,因此需要进一步的数据关联。大量的样本具有多个导线击打,这是没有用的,因为它错误地报告了该来源遍布整个地方并且处于不同的能量水平。通过缩小结果范围以仅在每次事件中使用不同轴上的最大信号对,可以确定对源在网格上方的位置的准确得多的分析。示出了基本原理和构造方法,但是,气体选择,几何形状和阳极丝构造证明是差的。要提供针对特定应用优化的系统,将需要详细的蒙特卡洛模拟。这些仿真结果以及本文实现的细节和技术将为最终的仪器提供更高的准确度。本研究的主要工作是为测试目的定制构建检测器。铝制腔室和所有电路板都是为此应用专门设计和制造的。设计了各种软件和可编程逻辑算法来实时分析原始数据,并试图确定哪些数据有用,哪些数据可以丢弃。本文介绍的研究结果为将来设计改进的第二代检测器提供了有用的结果。

著录项

  • 作者单位

    The University of Regina (Canada).;

  • 授予单位 The University of Regina (Canada).;
  • 学科 Engineering Electronics and Electrical.;Physics Radiation.;Engineering Nuclear.
  • 学位 M.A.Sc.
  • 年度 2012
  • 页码 128 p.
  • 总页数 128
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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