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Conductivity monitoring for leak detection in a double-walled plutonium container.

机译:电导率监测,用于双壁p容器中的泄漏检测。

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摘要

A methodology using ionizing radiation to determine the amount of non-noble gas in an otherwise noble gas environment as well as the activity of and type of radiation was examined. The movement of charge carriers in a weak electric field was modeled as well as the response of a charge-sensitive preamplifier that would be used to measure the charge carriers. Free-electron and ion pulses were determined to have collection times on the order of microseconds and milliseconds respectively. The electron and ion pulse maximum amplitudes were determined to be on the order of picoamps and femtoamps respectively.; An apparatus was assembled to test the model and three modes of radiation-detector operation were investigated; pulse mode, current mode, and mean square voltage (MSV) mode. The pulses resulting from positive ions and free-electrons created by an alpha particle in argon were collected and fit to the previously determined model. Positive and negative pulses in zero-air were also measured but the preamp response function did not correctly model the resulting pulses.; The current and MSV modes were subsequently examined. It was determined that non-noble constituents in an otherwise noble gas could be detected by monitoring the negative current arriving on the anode in the MSV mode. Monitoring the cathode in the current mode is the best method to determine total activity present.; This methodology has application in determining the integrity of a double-walled storage container.
机译:检验了使用电离辐射确定在其他情况下稀有气体环境中非稀有气体的量以及辐射的活性和类型的方法。模拟了弱电场中载流子的运动,以及用于测量载流子的电荷敏感型前置放大器的响应。确定自由电子和离子脉冲具有分别为微秒和毫秒量级的收集时间。电子和离子脉冲的最大振幅分别确定为皮安和飞安量级。组装了仪器以测试模型,并研究了辐射探测器的三种工作模式;脉冲模式,电流模式和均方电压(MSV)模式。收集由氩气中的α粒子产生的由正离子和自由电子产生的脉冲,并将其拟合到先前确定的模型中。还测量了零空气中的正脉冲和负脉冲,但前置放大器响应功能不能正确地模拟所得脉冲。随后检查了当前和MSV模式。已确定可以通过监测以MSV模式到达阳极的负电流来检测原本稀有气体中的非贵金属成分。以电流模式监控阴极是确定当前总活性的最佳方法。该方法学可用于确定双层存储容器的完整性。

著录项

  • 作者

    Nelson, Mark Andrew.;

  • 作者单位

    Texas A&M University.;

  • 授予单位 Texas A&M University.;
  • 学科 Engineering Nuclear.; Energy.
  • 学位 Ph.D.
  • 年度 2000
  • 页码 251 p.
  • 总页数 251
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 原子能技术;能源与动力工程;
  • 关键词

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