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Gamma-ray computed tomography SCANNERS for applications in multiphase system COLUMNS

机译:用于多相系统COLUMNS的伽马射线计算机断层扫描仪SCANNERS

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摘要

Gamma-ray tomography experiments have been carried out to detect spatial patterns in the porosity, in a 0.27 m diameter packed steel column using a first generation computed tomography (CT) system. The CT scanner consists of a Nal(Tl) detector 5.08 cm in diameter, and an encapsulated ~(137)Cs (3.7 GBq) radioactive source, located opposite to the center of the detector. The detector and the source, mounted on a fixed support and the column, can rotated and dislocate by two stepping motors controlled through a microprocessor. Different sizes of stainless steel Raschig rings (12.6,37.9 and 76 mm) have been examined. The primary objective of this work is to detect spatial patterns and statistical information on porosity variation in packed distillation columns. Horizontal scans, at different vertical positions of the packed bed were made for each size of Raschig rings. Radial porosity variation within the packed bed has been determined. This study has demonstrated that the porosity and its spatial distribution in a metallic packed column can be measured with adequate spatial resolution using the gamma-ray tomography technique. After validation of this first generation CT, the turntable design to rotate and dislocate the ~(60)Co or ~(137)Cs sealed gamma-ray sources and multidetector array for the third generation industrial computed tomography was also developed.
机译:已经进行了伽马射线层析成像实验,以使用第一代计算机层析成像(CT)系统在直径为0.27 m的填充钢柱中检测孔隙度的空间模式。 CT扫描仪由直径为5.08 cm的Nal(Tl)检测器和与检测器中心相对的封装的〜(137)Cs(3.7 GBq)放射源组成。安装在固定支架和色谱柱上的检测器和放射源可以通过由微处理器控制的两个步进电机来旋转和移位。已经检查了不同尺寸的拉西环不锈钢环(12.6、37.9和76毫米)。这项工作的主要目的是检测填充蒸馏塔中孔隙率变化的空间格局和统计信息。对于每种尺寸的拉西环,在填充床的不同垂直位置进行水平扫描。已确定填充床内的径向孔隙率变化。这项研究表明,可以使用伽马射线断层扫描技术以足够的空间分辨率测量金属填充柱中的孔隙率及其空间分布。在验证了第一代CT后,还开发了用于第三代工业计算机断层扫描的旋转和移位〜(60)Co或〜(137)Cs密封伽玛射线源和多探测器阵列的转台设计。

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  • 来源
    《Nukleonika》 |2009年第2期|129-133|共5页
  • 作者单位

    Brazilian National Nuclear Energy Commission (CNEN/SP), Institute for Nuclear and Energy Research (IPEN), Radiation Technology Center (CTR), 2242 Prof. Lineu Prestes Ave., - Cidade Universitaria, 05508-000, Sao Paulo - SP, Brazil,;

    Brazilian National Nuclear Energy Commission (CNEN/SP), Institute for Nuclear and Energy Research (IPEN), Radiation Technology Center (CTR), 2242 Prof. Lineu Prestes Ave., - Cidade Universitaria, 05508-000, Sao Paulo - SP, Brazil,;

    Brazilian National Nuclear Energy Commission (CNEN/SP), Institute for Nuclear and Energy Research (IPEN), Radiation Technology Center (CTR), 2242 Prof. Lineu Prestes Ave., - Cidade Universitaria, 05508-000, Sao Paulo - SP, Brazil,;

    Brazilian National Nuclear Energy Commission (CNEN/SP), Institute for Nuclear and Energy Research (IPEN), Radiation Technology Center (CTR), 2242 Prof. Lineu Prestes Ave., - Cidade Universitaria, 05508-000, Sao Paulo - SP, Brazil,;

    Brazilian National Nuclear Energy Commission (CNEN/SP), Institute for Nuclear and Energy Research (IPEN), Radiation Technology Center (CTR), 2242 Prof. Lineu Prestes Ave., - Cidade Universitaria, 05508-000, Sao Paulo - SP, Brazil,;

    Brazilian National Nuclear Energy Commission (CNEN/SP), Institute for Nuclear and Energy Research (IPEN), Radiation Technology Center (CTR), 2242 Prof. Lineu Prestes Ave., - Cidade Universitaria, 05508-000, Sao Paulo - SP, Brazil,;

    Brazilian National Nuclear Energy Commission (CNEN/SP), Institute for Nuclear and Energy Research (IPEN), Radiation Technology Center (CTR), 2242 Prof. Lineu Prestes Ave., - Cidade Universitaria, 05508-000, Sao Paulo - SP, Brazil,;

    Brazilian National Nuclear Energy Commission (CNEN/SP), Institute for Nuclear and Energy Research (IPEN), Radiation Technology Center (CTR), 2242 Prof. Lineu Prestes Ave., - Cidade Universitaria, 05508-000, Sao Paulo - SP, Brazil,;

    Brazilian National Nuclear Energy Commission (CNEN/SP), Institute for Nuclear and Energy Research (IPEN), Radiation Technology Center (CTR), 2242 Prof. Lineu Prestes Ave., - Cidade Universitaria, 05508-000, Sao Paulo - SP, Brazil,;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    industrial computed tomography; multiphase flow systems; non-destructive testing; gas absorption column; industrial process optimization; packed distillation columns; scanning systems;

    机译:工业计算机断层扫描;多相流系统;非破坏性测试;气体吸收塔工业过程优化;填充蒸馏塔扫描系统;

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