便携式核素识别仪设计

Design of the Portable Nuclide Identifier

  • 摘要: 为满足核泄漏风险场所快速、就地核素分析及测量的需求,基于能谱测量及分析原理,设计一种低维护和制造成本的核素识别仪及其能谱分析算法方案。该方案包括平滑、寻峰、本底扣除、核素识别和无源稳谱算法等关键技术,其中平滑算法采用最小二乘法,通过优化编程计算函数,最高可实现120阶平滑处理;优化一阶导数寻峰算法,并将无源稳谱分为预热和自稳峰两个过程,无源稳峰能谱数组与测量能谱数组分别映射至不同存储空间,有效解决了长时间或大计数率情况下能峰漂移难以识别的问题。对研制的便携式核素识别仪进行功能检验,其能量线性和稳谱功能表现良好,并通过137Cs、60Co、133Ba标准源开展单核素及多核素识别实验,结果表明该仪器能够正确识别核素,实验结果准确可靠,验证了该方案的有效性和实用性,可为核泄漏风险场所的核素快速识别提供有效的技术支持。

     

    Abstract: To meet the demand for rapid, on-site radionuclide analysis and measurement in nuclear leakage risk areas, a radionuclide identifier and its associated spectral analysis algorithm scheme with low maintenance and manufacturing costs have been designed and implemented based on the principles of spectral measurement and analysis The. scheme encompasses several key technologies, including smoothing, peak searching, background subtraction, radionuclide identification, and passive spectral stabilization algorithms. Specifically, the smoothing algorithm employs the least squares method, and through optimized programming of computational functions, it can achieve up to 120th-order smoothing processing. The first-order derivative peak searching algorithm has been optimized, and the passive spectral stabilization is divided into two processes: warm-up and self-stabilization. The spectral array for passive stabilization and the measured spectral array are mapped to different storage spaces, effectively addressing the issue of peak drift that is difficult to identify under long-term or high-count-rate conditions. The portable radionuclide identifier was tested for its energy linearity and spectral stabilization functions, which performed well. Single-nuclide and multi-nuclide identification experiments were conducted using standard sources of 137Cs, 60Co, and 133Ba, and the results demonstrated that the instrument can accurately identify radionuclides with reliable outcomes. This validated the effectiveness and practicality of the scheme, providing effective technical support for rapid radionuclide identification in nuclear leakage risk areas.

     

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